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V.3 Bibliographie

1. Acar, M., Jafar-Nejad, H., Giagtzoglou, N., Yallampalli, S., David, G., He, Y., Delidakis, C., Bellen, H.J., (2006). Senseless physically interacts with proneural proteins and functions as a transcriptional co-activator. Development 133, 1979-1989.

2. Adachi, M., Suematsu, S., Kondo, T., Ogasawara, J., Tanaka, T., Yoshida, N., and Nagata, S., (1995). Targeted mutation in the Fas gene causes hyperplasia in peripheral lymphoid organs and liver. Nat. Genet., 11(3), 294-300.

3. Alliston, T., Ko, TC, Cao Y., Liang, YY, Feng, XH, Chang, C., and Derynck, R., (2005). Repression of bone morphogenetic protein and activin-iducible transcription by Evi-1. J.Biol.Chem. 280:24227-24237.

4. Anderson, A.C., Robey, E.A., and Huang, Y.H., (2001). Notch signaling in lymphocyte development. Curr. Opin. Genet. Dev. 11, 554-560.

5. Appel, B., Fritz, A., Westerfield, M., Grunwald, D.J., Eisen, J.S., and Riley, B.B., (1999). Delta-mediated specification of midline cell fates in zebrafish embryos. Curr.

Biol. 9, 247-256.

6. Armstrong, R.C., Kim, J.G., and Hudson, L.D., (1995). Expression of myelin transcription factor 1 (MyT1), a « zinc-finger » DNA binding protein, in developing oligodendrocytes. Glia 14, 303-321.

7. Armstrong, R.C., Migneault, A., Shegog, M.L., Kim, J.G., Hudson, L.D., Hessler, R.B., (1997). High grade human brain tumors exhibits increased expression of myelin transcription factor 1 (MyT1), a zinc finger DNA-binding protein. J. Neuropathol. Exp.

Neurol. 56, 772-781.

8. Bae, S., Bessho, Y., Hojo, M., and Kageyama, R., (2000). The bHLH gene Hes6, an inhibitor of Hes1, promotes neuronal differentiation. Development 127, 2933-2943.

9. Baker, J.C., Beddington, R.S., and Harland, R.M. (1999). Wnt signaling in Xenopus embryos inhibits bmp4 expression and activates neural development. Genes Dev. 13, 3149-3159.

10. Bartholomew, C., Kilbey, A., Clark, AM, and Walker, M., (1997). The Evi-1 proto- oncogene encodes a transcriptional repressor activity associated with transformation.

Oncogene 14:569-577.

11. Bayer, S.A., and Altman, J., (1991). Neocortical Development. (New York: Raven Press).

(2)

12. Becker, D.M., and Lundblad, V., (1994). Introduction of DNA into yeast cells. In:

Ausubel, F.M., Brent, R., Kingstone, R.E., Moore, D.D., Seidman, J.G., Smith, J.A., Struhl, K., editors. Current Protocols in molecular biology. New York: John Wiley and Sons Inc. p13.7.1-13.7.10.

13. Beddington, R.S., (1994). Induction of a second neural axis by the mouse node.

Development 120:613-620.

14. Bellefroid, E., Bourguignon, C., Hollemans, T., and Pieler, T., (1996). XMyT1, a Xenopus C2HC-Type Zinc Finger Protein with a Regulatory Function in Neuronal Differentiation. Cell, 87, 1191-1202.

15. Bellefroid, E.J., Kobbe, A., Gruss, P., Pieler, T., Gurdon, J.B., and Papalopulu, N., 1998. Xiro3 encodes a Xenopus homolog of the Drosophila Iroquois genes and functions in neural specification. EMBO J. 17, 191–203.

16. Bertrand N, Castro D, Guillemot F. 2002. Proneural genes and the specification of neural cell types. Nature Neuroscience 3, 517-530.

17. Blokzijl, A., Dahlqvist, C., Reissmann, E., Falk, A., Moliner, A., Lendahl, U., and Ibanez, C.F., (2003). Cross-talk between the Notch and TGF-beta signalling pathways mediated by interaction of the Notch intracellular domain with Smad3. J. Cell Biol.

163, 723-728.

18. Boy, S., Souopgui, J., Amato, M.A., Wegnez, M., Pieler, T., and Perron, M., (2004).

XSEB4R, a novel RNA-binding protein involved in retinal cell differentiation downstream of bHLH proneural genes. Development 131, 851-862.

19. Boyd, JM, Subramanian, T., Schaeper, U., La Regina, M., Bayley, S., and Chinnadurai, G., (1993). A region in the C-terminus of adenovirus 2/5 E1a protein is required for association with a cellular phosphoprotein and important for the negative modulation of T24-ras mediated transformation, tumorigenesis and metastasis. EMBO J;12:469- 478.

20. Brannon, M., Brown, J.D., Bates, R., Kimelman, D., and Moon R., (1999). XCtBP is a XTcf-3 co-repressor with role throughout Xenopus development. Dev., 126, 3159- 3170).

21. Breslin, M.B., Zhu, M., Notkins, A.L., and Lan, M.S., (2002). Neuroendocrine differentiation factor, IA-1 is a transcriptional repressor and contains a specific DNA- binding domain: identification of a consensus IA-1 binding sequence. Nucleic Acids Res. 30, 1038–1045.

(3)

22. Breslin, M.B., Zhu, M., and Lan, M.S., (2003). NeuroD1/E47 regulates the Ebox element of a novel zinc finger transcription factor, IA-1, in the developing nervous system. J. Biol. Chem. 278, 38991–38997.

23. Bustin, S. A., (2000). Absolute quantification of mRNA using realtime reverse transcription polymerase chain reaction assays. Journal of Molecular Endocrinology 25: 169-193.

24. Bylund, M., Andersson, E., Novitch, BG, and Muhr, J., (2003). Vertebrate neurogenesis is counteracted by Sox1-3 activity. Nat.Neurosci 6:1162-1168.

25. Cao, Y., Zhao, H., Grunz, H., (2002). XETOR regulates the size of the proneural domain during primary neurogenesis in Xenopus laevis. Mechanisms of Development 119:35–44.

26. Carruthers, S., Mason, J., and Papalopulu, N., (2003). Depletion of the cell-cycle inhibitor p27(Xic1) impairs neuronal differentiation and increases the number of ElrC(+) progenitor cells in Xenopus tropicalis. Mech. of Dev. 120, 607-616.

27. Cavodeassi, F., Modolell, J., and Gomez-Skarmeta, J.L., 2001. The iroquois genes:

from body building to neural patterning. Development 128, 2847–2855.

28. Chakraborty, S., Senyuk, V., Sitailo, S., Chi, Y., and Nucifora, G., (2001). Interaction of EVI1 with cAMP-responsive element-binding protein-binding protein (CBP) and p300/CBP-associated factor (P/CAF) results in reversible acetylation of EVI1 and in co-localization in nuclear speckles. J.Biol.Chem. 276:44936-44943.

29. Chanoine, C., and Hardy, S., 2003. Xenopus muscle development: from primary to secondary myogenesis. Dev Dyn. 226(1):12-23.

30. Chevrey, P.M., and Nathans, D., (1992). Protein interacting cloning in yeast:

identification of mammalian proteins that react with the leucine zipper. Jun. Natl Sci 89:5789-5793.

31. Chinnadurai, G., (2003). CtBP family proteins: more than transcriptional corepressor.

BioEssays, 25, 9-12.

32. Chitnis, A., Henrique, D., Lewis, J., Ish-Horowicz, D., and Kintner, C., (1996).

Primary neurogenesis in Xenopus embryos is regulated by a homologue of Drosophila neurogenic gene Delta. Nature 375, 761-766.

33. Chitnis, A., and Kintner, C., (1996). Sensitivity of proneural genes to lateral inhibition affects the pattern of primary neurons in Xenopus embryos. Development 122:2295- 2301.

(4)

34. Comijn, J., Berx, G., Vermassen, P., Verschueren, K., van Grunsven, L., Bruyneel, E., Mareel, M., Huylebroeck, D., and van Roy, F., (2001). The two-handed E box binding zinc finger protein SIP1 downregulates E-Cadherin and induces invasion. Mol.Cell.

7:1267-1278.

35. Conlon, R.A., Reaume, A.G., and Rossant, J., (1995). Notch1 is required for the coordinate segmentation of somites. Development 121, 1533-1545.

36. Cowan, WM, Jessel, TM, and Zipurski, SL, (1995). Molecular and Cellular Approaches to Neural Development. Edition Oxford.

37. Darribère, T., (2002). Introduction à la biologie du développement. Paris. Edition Belin.

38. Davis, R.L. and Turner, D.L., (2001). Vertebrate hairy and Enhancer of split related proteins: transcriptional repressors regulating cellular differentiation and embryonic patterning. Oncogene 20:8342-8357.

39. Dawson, S.R., Turner, D.L., Weintraub, H., and Parkhurst, S.M., (1995). Specificity for the hairy/enhancer of split basic helix-loop-helix (bHLH) proteins maps outside the bHLH domain and suggests two separable modes of transcriptional repression.

Mol. Cell Biol.15, 6923-6931.

40. Deblandre, G.A., Wettstein, D.A., Koyano-Nakagawa, N., and Kintner, C. (1999). A two-step mechanism generates the spacing pattern of the ciliated cells in the skin of Xenopus embryos. Development 126, 4715-4728.

41. De Jong, D.S., Steegenga, W.T., Hendriks, J.M., Van Zoelen, E.J., Olijve, W., and Dechering, K.J., (2004). Regulation of Notch signalling genes during BMP2-induced differentiation of osteoblast precursor cells. Biochem. Biophys. Res. Commun. 320, 100-107.

42. de la Calle-Mustienes, E., Glavic, A., Modolella, J., Gomez-Skarmeta, JL, (2002).

Xiro homeoproteins coordinate cell cycle exit and primary neuron formation by upregulating neuronal-fate repressors and downregulating the cell-cycle inhibitor XGadd45γ. Mechanisms of Development 119:69–80.

43. de la Pompa, J.L., Wakeham, A., Correia, K.M., Samper, E., Brown, S., Aguilera, R.J., Nakano, T., Honjo, T., Mak, T.W., Rossant, J., and Conlon, R.A., (1997).

Conservation of the Notch signalling pathway in mammalian neurogenesis.

Development 124, 1139-1148.

(5)

44. Delaune, E., Lemaire, P., and Kojabachian, L., (2005). Neural iduction in Xenopus requires early FGF signalling in addition to BMP inhibition. Development 132:299- 310.

45. Deltour, S., Pint, S., Guerardel, C., Wasylyk, B., and Leprince, D., (2002). The human candidate tumor suppressor gene HlC1 rec degenerate GLDLSKK motif. Molecular Cell Biology, 22 (13), 4890-4901.

46. De Robertis, EM, and Kuroda, H., (2004). Dorsal ventral patterning and neural induction in Xenopus embryos. Annual Review of Cell and Developmental Biology 20:285-308.

47. Dirami, G., Ravindranath, N., Achi, M.V., and Dym, M., (2001). Expression of Notch pathway components in spermatogonia and Sertoli cells of neonatal mice. J. Androl 22, 944-952.

48. Dubois, L., Bally-Cuif, L., Crozatier, M., Moreau, J., Paquereau, L., and Vincent, A., (1998). XCoe2, a transcription factor of the Col/Olf-1/EBF family involved in the specification of primary neurons in Xenopus. Curr. Biol. 8, 199–209.

49. Eisaki, A., Kuroda, H., Fukui, A., and Asashima, M., (2000). XSIP1, a member of two- handed zinc finger proteins, induced anterior neural markers in Xenopus laevis animal cap. Biochem Biophys Res Commun 271:151-157.

50. Farah, M., Olson, J., Sucic, H., Hume, R., Tapscott, S., and Turner, D., 2000.

Generation of neurons by transient expression of the neural bHLH proteins in mammalian cells. Development 127, 693–702.

51. Fode, C., Ma, Q., Casarosa, S., Ang, S. L., Anderson, D. J. and Guillemot, F. (2000).

A role for neural determination genes in specifying the dorsoventral identity of telencephalic neurons. Genes Dev. 14, 67-80.

52. Franco, P.G., Paganelli, A.R., Lopez, S.L., and Carrasco, A.E., (1999). Functional association of retinoic acid and hedgehog signaling in Xenopus primary neurogenesis.

Development 126:4257-4265.

53. Friedman, J., Fredericks, W., Jensen, D., Speicher, D., Huang, X., Neilson, E., and Rauscher, FR, (1996). KAP-1, a novel corepressor for the highly conserved KRAB repression domain. Genes Dev. 10:2067-2078.

54. Fryer, CJ, Lamar, E, Turbachova, I., Kintner, C., and Johns, KA, (2002). Mastermind mediates chromatin-specific transcription and turnover of the Notch enhancer complex. Genes Dev. 16:1397-1411.

(6)

55. Furusawa, T., Moribe, H., Kondoh, H., Higashi, Y., (1999). Identification of CtBP1 and CtBP2 as corepressors of zinc finger-homeodomain factor deltaEF1. Mol Cell Biol 19:8581–8590.

56. Garcia-Dominguez, M., Poquet, C., Garel, S., and Charnay, P., (2003). Ebf gene function is required for coupling neuronal differentiation and cell cycle exit.

Development 130: 6013-6025.

57. Garriock, R.J., Vokes, S.A., Small, E.M., Larson, R., and Krieg, P.A., 2001.

Developmental expression of the Xenopus Iroquois-family homeobox genes, Irx4 and Irx5. Dev. Genes Evol. 211, 257–260.

58. Gibson, U. E., Heid, C. A., and Williams, P. M., (1996). A novel method for real time quantitative RT-PCR. Genome Research 6:995-1001.

59. Giebel, B. and Campos-Ortega, J.A., (1997). Functional dissection of the Drosophila enhancer of split protein, a suppressor of neurogenesis. Proc. Natl. Acad. Sci. U. S. A 94, 6250-6254.

60. Gierl, M.S., Karoulias, N., Wende, H., Strechle, M., and Birchmeier, C., 2006. The Zinc-finger factor Insm1 (IA-1) is essential for the development of pancreatic β cells and intestinal endocrine cells. Genes and Development 20:2465-2478.

61. Gietz, RD, and Woods, RA, (2002). Transformation of yeast by lithium acetate/single- stranded carrier DNA/polyethylene glycol method. Methods Enzymol. 2002;350:87-96.

62. Gomez-Skarmeta, J.L., Glavic, A., de la Calle-Mustienes, E., Modolell, J., and Mayor, R., 1998. Xiro, a Xenopus homolog of the Drosophila Iroquois complex genes, controls development at the neural plate. EMBO J. 17, 181–190.

63. Gomez-Skarmeta, J.L., De la Calle-Mustienes, E., and Modolell, J., 2001. The Wnt- activated Xiro-1 gene encodes a repressor that is essential for neural development and downregulates Bmp-4. Development 128, 551–560.

64. Goto, Y., De Silva, M.G., Toscani, A., Prabhaker, B.S., Notkins, A.L., and Lan, M.S., (1992). A novel human insulinoma-associated cDNA, IA-1, encodes a protein with

‘‘zinc-finger’’ DNA-binding motifs. J. Biol.Chem. 267, 15252–15257.

65. Gowan, K., Helms, A. W., Hunsaker, T. L., Collisson, T., Ebert, P. J., Odom, R. and Johnson, J. E. (2001). Crossinhibitory activities of Ngn1 and Math1 allow specification of distinct dorsal interneurons. Neuron 31,219-232.

66. Gradwhol, G., Fode, C., and Guillemot, F., (1996). Restricted expression of a novel murine atonal-related bHLH protein in undifferentiated neural precursors. Dev. Biol.

180, 227-241.

(7)

67. Graham, V., Khudyakov, J., Ellis, P., and Pevny, L., (2003). SOX2 functions to maintain neural progenitors identity. Neuron 39:749-765.

68. Grbavec, D., and Stifani, S., (1996). Molecular interaction between TLE1 and the carboxyl-terminal domain of HES-1 containing the WRPW motif. Biochem. Biophys.

Res. Commun. 223:701-705.

69. Grooteclaes, ML, and Frisch, SM, (2000). Evidence for a function of CtBP in epithelial gene regulation and anoikis. Oncogene 19:3823–3828.

70. Grunz, H., and Tacke, L., (1989). Neural differentiation of Xenopus laevis takes place after disagreggation and delayed aggregation without inducer. Cell. Differ. Dev.

28:211-217.

71. Gu, G., Wells, JM, Dombkowski, D., Preffer, F., Aronow, B., and Melton, DM, 2003.

Global expression analysis of gene regulatory pathway during endocrine pancreatic development. Development 131, 165-179.

72. Hamburger, V., and Hamilton, HL, (1951). A series of normal stages in the development of the chick embryo. J Morphol 88:49–92.

73. Haas K., Sin W.C., Javaherian A., Li Z., and Cline H.T., (2001). Single-Cell electroporation for gene transfer in vivo. Neuron, 29: 583-91.

74. Hayashi, T., Kageyama, Y., Ishizaka, K., Xia, G., Kihara, K., and Oshima, H., (2001).

Requirement of Notch 1 and its ligand jagged 2 expressions for spermatogenesis in rat and human testes. J. Androl 22, 999-1011.

75. Heasman, J., (2002). Morpholino oligos: making sense of antisense? Dev. Biol. 243, 209-214.

76. Hickabottom, M., Parker, GA, Freemont, P., Crook, T., and Allday MJ, (2002). Two Nonconsensus Sites in the Epstein-Barr Virus Oncoprotein EBNA3A Cooperate to Bind the Co-repressor Carboxyl-terminalbinding Protein (CtBP). JBC 277:49, 47197–

47204.

77. Hildebrand, JD, and Soriano, P., (2002). Overlapping and Unique Roles for C- Terminal Binding Protein 1 (CtBP1) and CtBP2 during Mouse Development.

Molecular and Cellular Biology, 8:5296–5307.

78. Hirsch, N., Zimmerman, LB, and Grainger, RM, (2002). Xenopus, the next generation:

X. tropicalis genetics and genomics. Dev.Dyn.225:422-433.

79. Hoffman, C.S., (1997). Preparation of yeast DNA. Current. Protocols. in Molecular.

Biology 13:11, 1-13 John Wileys & Sons, Inc.

(8)

80. Hollyday, M., 2001. Neurogenesis in the vertebrate neural tube. Int. J. Dev.Neurosci.

19, 161–173.

81. Holt, CE, Garlick, N., and Cornel, E., (1990). Lipofection of cDNAs in the embryonic vertebrate central nervous system. Neuron (2):203-214.

82. Iso, T., Kedes, L., Hamamori, Y., 2003. HES and HERP families: multiple effectors of the Notch signalling pathway. J. Cell. Physiol. 194, 237– 255.

83. Izutsu, K., Kurokawa, M., Imai, Y., Maki, K., Mitani, K., and Hirai., H., (2001). The corepressor CtBP interacts with Evi-1 to repress transforming growth factor beta signalling. Blood 97:2815–2822.

84. Jafar-Nejad, H., Acar, M., Nolo, R., Lacin, H., Pan, H., Parkhurst, S., and Bellen, H., (2003). Sensless actas as a binary switch during sensory organ precursor selection.

Genes & Development 17:2966-2978.

85. James, P., Halladay, J., Craig, EA, (1996). Genomic libraries and a host strain designed for highly efficient two-hybrid selection in yeast. Genetics 144(4):1425-36.

86. Jandrig, B., Seitz, S., Hinzmann, B., Arnold, W., Micheel, B., Koelble, K., Siebert, R., Schwartz, A., Ruecker, K., Schlag, PM, Scherneck, S., and Rosenthal, A., (2004).

ST18 is a breast cancer tumor suppressor gene at human chromosome 8q11.2.

Oncogene 23(57):9295-302.

87. Jen, W.C., Gawantka, V., Pollet, N., Niehrs, C., and Kintner, C. (1999). Periodic repression of Notch pathway genes governs the segmentation of Xenopus embryos.

Genes Dev. 13, 1486-1499.

88. Jiang, Y., Yu, V.C., Buchholtz, F., O’Connell, S., Rhodes, S.J., Canderolo, C., Xia, Y.R., Lusis, A.J., and Rosenfeld, M.G, (1996). A novel family of Cys-Cys, His-Cys zinc finger transcription factors expressed in developing nervous system and pituitary gland. J. Biol. Chem. 271, 10723-10730.

89. Kageyama, R., and Nakanishi, S., (1997). Helix-loops-helix factord in growth and differentiation of the vertebrate nervous system. Curr. Opin. Genet.Dev.

90. Kao, H.Y., Ordentlich, P., Koyano-Nakagawa, N., Tang, Z., Downes, M., Kintner, C.R., Evans, R.M., and Kadech, T., (1998). A histone deacetylase corepressor complexe regulates the Notch signal transduction pathway. Genes Dev. 12:2269-2277.

91. Kim, J.G., and Hudson, L.D., (1992). Novel Member of the Zinc Finger Superfamily : A C2-HC Finger That Recognizes a Glia-Specific Gene. Molecular and Cellular Biology, 12, 5632-5639.

(9)

92. Kim, J.G., Armstrong, R.C., Agoston, D., Robinsky, A., Wiese, C., Nagle, J., and Hudson L.D., (1997). Myelin Transcription Factor 1 (Myt1) of the oligodendrocyte lineage, along with a closely related CCHC Zinc Finger, is expressed in developing neurons in the mammalian central nervous system. J. Neurosci. Res., 50 (2), 272-290.

93. Kintner, C., (2002). Neurogenesis in embryos and in adult neural stem cells. J.

Neurosc. 22:639-643.

94. Kishi, M., Mizuseki, K., Sasai, N., Yamazaki, H., Shiota, K., Nakanishi, S., and Sasai, Y., (2000). Requirement of Sox2-mediated signalling for differentiation of early Xenopus neuroectoderm. Development 127:791-800.

95. Koipally, J., and Georgopoulos, K., (2000). Ikaros interactions with CtBP reveal a repression mechanism that is independent of histone deacetylase activity. J. Biol.

Chem. 275:19594–19602.

96. Koyano-Nakagawa, N., Kim, J., Anderson, D., and Kintner, C. (2000). Hes6 acts in a positive feedback loop with the neurogenins to promote neuronal differentiation.

Development 127,4203-4216.

97. Koyano-Nakagawaa, N., and Kintner, C., (2005). The expression and function of MTG/ETO family proteins during neurogenesis. Developmental Biology 278:22–34.

98. Kroll, K.L., and Amaya, E., (1996). Transgenic xenopus embryos from sperm nuclear transplantations reveal FGF signalling requirements during gastrulation. Development, 122:3173-3183.

99. Kudoh, T., and Dawid, I.R., 2001. Role of the iroquois3 homeobox gene in organizer formation. Proc. Natl. Acad. Sci. USA 98, 7852–7857.

100. Kumar, V., Carlson, J. E., Ohgi, K. A., Edwards, T. A., Rose, D. W., Escalante, C. R., Rosenfeld, M. G., and Aggarwal, A. K., (2002). Transcription corepressor CtBP is an NAD(+)-regulated dehydrogenase. Mol. Cell 10(4):857–869

101. Kuo, JS, Patel, M., Gamse, J., Merzdorf, C., Liu, X., Apekin, V., and Sive, H., (1998). Opl: a zinc finger protein that regulates neural determination and patterning in Xenopus. Development 125(15):2867-82

102. Kuzin, A., Brody, T., Moore, AW, and Odenwald, WF, 2005. Nerfin-1 is required for early axon guidance decisions in the developing Drosophila CNS. Dev Biol. 15;277(2):347-65.

103. Lamar, E., Kintner, C., and Goulding, M., (2001). Identification of NKL, a novel Gli-Kruppel Zinc-Finger protein that promotes neuronal differentiation. Dev.,

(10)

104. Lan, M.S., Russell, E.K., Lu, J., Johnson, B.E., and Notkins, A.L., (1993). IA-1, a new marker for neuroendocrine differentiation in human lung cancer cell lines.

Cancer Res. 53, 4169–4171.

105. Lopez, S.L., Paganelli, A.R., Siri, M.V., Ocana, O.H., Franco, P.G., and Carrasco, A.E., (2003). Notch activates sonic hedgehog and both are involved in the specification of dorsal midline cell-fates in Xenopus. Development 130, 2225-2238.

106. Lee JE, Hollenberg, SM, Snider, L., Turner, DL., Lipnick, N., and Weintraub, H., (1995). Conversion of Xenopus ectoderm into neurons by NeuroD, a basic helix- loop-helix protein. Science 268:836-844.

107. Li, Q., Notkins, A. L., and Lan, M.S., (1997). Molecular Characterization of the Promoter Region of a Neuroendocrine Tumor Marker, IA-1. Biochem. Biophys.

Res. Commun.236, 776–781.

108. Lin, Q., Lu, J., Yanagisawa, H., Webb, R., Lyons, GE, Richardson, JA, and Olson, EN, (1998). Requirement of the MADS-box transcription factor MEF2C for vascular development. Development 125:4565–4574.

109. Linker, C., and Stern, CD, (2004). Neural induction requires BMP inhibition only as a late step, and involves signals other than FGF and Wnt antagonists.

Development 131:5671-5681.

110. Long, J., Zuo, D., and Park, M., (2005). Pc2-mediated SUMOylation of Smad- interacting protein 1 attenuates transcriptional repression of E-Cadherin. J Biol Chem.280(42):35477-35489.

111. Lu, J., McKinsey, TA, Zhang, CL, and Olson, EN, (2000). Regulation of skeletal myogenesis by association of the MEF2 transcription factor with class II histone deacetylases. Mol. Cell 6:233–244.

112. Lukowski, C.M., Ritzel, R.G., Waskiewicz, A.J., (2006). Expression of two insm1-like genes in the developing zebrafish nervous system. Gene Expression. In Press

113. Ma, Q., Kintner, C., and Anderson, DJ., (1996). Identification of neurogenin, a vertebrate neuronal determination gene. Cell 87:43-52.

114. Mackay, I. M., Arden, K. E., and Nitsche, A., (2002). Real time PCR in virology. Nucleic Acids Research 30: 1292-1305.

115. Matsushita, F., Kameyama, T., and Marunouchi, T., (2002). NZF-2b is a novel predominant form mouse NZF-2/Myt1, expressed in differentiated neurons especially a higher level in newly generated ones. Mechanism of development, 118, 209-213.

(11)

116. McGrew, L.L., Lai, C.J., and Moon, R.T., (1995). Specification of the anterior posterior neural axis through synergistic interaction of the Wnt signalling cascade with noggin and follistatin. Dev.Biol172,337-42.

117. McLaughlin, K.A., Rones, M.S., and Mercola, M., (2000). Notch regulates cell fate in the developing pronephros. Dev. Biol. 227, 567-580.

118. Melhuish, T. A., and Wotton, D., (2000). The interaction of the carboxyl terminus-binding protein with the Smad corepressor TGIF is disrupted by a holoprosencephaly mutation in TGIF. J. Biol. Chem. 275:39762–39766.

119. Mellitzer, G., Bonne, S., Luco, RF, Van De Casteele, M., Lenne-Samuel, N., Collombat, P., Mansouri, A., Lee, J., Lan, M., Pipeleers, D., Nielsen, FC, Ferrer, J., Gradwohl, G., and Heimberg, H., (2006). IA1 is NGN3-dependent and essential for differentiation of the endocrine pancreas. EMBO J. 2006 Mar 22;25(6):1344-52.

120. Mizuseki, K., Kishi, M., Shiota, K., Nakanishi, S., and Sasai, Y., (1998). SoxD:

an essential mediator of induction of anterior neural tissues in Xenopus embryos.

Neuron 21:77-85.

121. Molloy, DP, Milner, AE, Yakub, IK, Chinnadurai, G., Gallimore, PH, and Grand, RJ., (1998). Structural determinants present in the C-terminal binding protein binding site of adenovirus early region 1A proteins. J Biol Chem;273:20867-20876.

122. Morel, V., Lecourtois, M., Massiani, O., Maier, D., Preiss, A., and Schweisguth, F., (2001). Transcriptional repression by Suppressor of Hairless involves the binding of Hairless dCtBP complex in Drosophila. Current Biology 11:789-792.

123. Mori, S., Kadokawa, Y., Hoshinaga, K., and Marunouchi, T., (2003).

Sequential activation of Notch family receptors during mouse spermatogenesis. Dev.

Growth Differ. 45, 7-13.

124. Morrison, T. M., Weis, J. J., and Wittwer, C. T., (1998). Quantification of low- copy transcripts by continuous SYBR green I monitoring during amplification.

Biotechniques 24:952-962.

125. Munoz-Sanjuan, I., and Brivanlu, A.H., (2002). Neural induction: the default model and embryonic stem cells. Nat. Rev. Neurosci. 3,271-280.

126. Munoz-Sanjuan, I., Bell, E., Altmann, CR, Vonica, A., and Brivanlu, AH, (2002). Gene profiling during neural induction in Xenopus laevis: regulation of BMP signalling by post-transcriptional mechanisms and TAB3, a novel TAK-1 binding

(12)

127. Mutoh, H., Naya, FJ, Tsai, MJ, and Leiter AB, (1998). The basic helix–loop–

helix protein BETA2 interacts with p300 to coordinate differentiation of secretin- expressing enteroendocrine cells. Genes & Dev.12: 820-830.

128. Nakagawa, O., Mc Fadden, D.G., Nakagawa, M., Yanagisawa, H., Hu, T., Srivastava, D., and Olson, E.N., (2000). Members of the HRT family of basic helix–

loop-helix protein act as transcriptional repressors downstream of Notch signalling.

Proc. Natl. Acad. Sci. 97, 13655– 13660.

129. Nakata, K., Nagai, T., Aruga, J., and Mikoshiba, K., (1997). Xenopus Zic3, a primary regulator both in neural and neural crest development. Proc Natl Acad Sci U.S.A. 94(22):11980-11985.

130. Nguyen, L., besson, A., Heng, J.I.T., Schuurmans, C., Teboul, L., Parras, C., Philpott, A., Roberts, J., and Guillemot, F., (2006). p27kip1 independently promotes neuronal differentiation and migration in the cerebral cortex. Genes Dev. 20, 1511- 1524.

131. Nibu, Y., Zhang, H., Bajor, E., Barolo, S., Small, S., and Levine, M., (1998).

dCtBP mediates transcriptional repression by Knirps, KruÈppel and Snail in the Drosophila embryo. EMBO J;17:7009-7020.

132. Nibu, Y., Zhang, H., and Levine, M., (1998). Interaction of short-range repressors wite Drosophila CtBP in the embryo. Science;280:101-104.

133. Nibu, y., and S. Levine MS, (2001). CtBP-dependent activities of the short- range Giant repressor in the Drosophila embryo. PNAS 22:98:11,6204–6208.

134. Nicolas, M., Wolfer, A., Raj, K., Kummer, J.A., Mill, P., van, N.M., Hui, C.C., Clevers, H., Dotto, G.P., and Radtke, F., (2003). Notch1 functions as a tumor suppressor in mouse skin. Nat. Genet. 33, 416-421.

135. Nielsen, J., Hudson, L.D., and Armstrong, R.C., (2002). Nuclear organization in differentiating oligodendrocytes. J. of Cell Science, 115, 4071-4079.

136. Nielsen, J.A., Bernt, J.A., Hudson L.D., Armstrong, R.C., (2004). Myelin transcription factor 1 (Myt1) modulates the proliferation and differentiation of oligodendrocyte lineage cells. Mol. Cell Neurosc., 25, 111-123.

137. Nieuwkoop, P.D., and Faber, J., (1967). Normal Table of Xenopus laevis (Daudin). Garland Publishing Inc, New York.

138. Nucifora, G., Laricchia-Robbio, L., and Senyuk, V., (2006). EVI1 and hematopoietic disorders: history and perspectives. Gene 368:1-11.

(13)

139. Ogryzko, V., Schiltz, RL, Russanova, V., Howard, BH, and Nakatani, Y, (1996). The transcriptional coactivators p300 and CBP are histone acetyltransferases.

Cell 87:953-959.

140. Oschwald, R., Richter, K., and Grunz, H., 1991. Localization of a nervous system-specific class II beta-tubulin gene in Xenopus laevis embryos by whole-mount in situ hybridization. Int J Dev Biol. 35(4):399-405.

141. Oswald, F., Täuber, B., Dobner, T., Bourteele, S., Kostezka, U., Adler, G., Liptay, S., and Sshmid, RM, (2001). P300 acts as a transcriptional coactivator for mammalian Notch-1. Mol. Cell. Biol. 21:7761-7774.

142. Packer, MA, Stasiv, Y., Benraiss, A., Chmielnicki, E., Grinberg, A., Westphal, H., Goldman, SA, and Enikolopov, G., (2003). Nitric oxide negatively regulates mammalian adult neurogenesis. PNAS, 100,16:9566–9571.

143. Palmer, S., Brouillet, JP, Kilbey, A., Fulton, R., Walker, M., Crossley, M., and Bartholomew, C., (2001). Evi-1 transforming and repressor activities are mediated by CtBP co-repressor proteins. J.Biol.Chem. 276:25834-25840.

144. Pan, F.C., Cen, Y., Loeber, J., Henningfeld, K., and Pieler, T., (2005). I-SceI meganucleasemediated transgenesis in Xenopus. Dev.Dyn.235:247-252.

145. Parr, B.A., and McMahon, A.P., (1994). Wnt genes and vertebrate development. Curr.Opin.Genet.Dev.4:523-528.

146. Peng, Y., Jiang, BH, Yang, PH, Cao, Z., Shi, X., Lin, MCM, and Kung, HF, (2004). Phosphatidylinositol 3-Kinase Signaling Is Involved in Neurogenesis during Xenopus Embryonic Development. JBC 279,27:28509–28514.

147. Penzel, R., Oschwald, R., Chen, Y., Tacke, L., and Grunz, H., (1997).

Characterization and early embryonic expression of a neural specific transcription factor xSOX3 in Xenopus laevis. Int.J.Dev.Biol 41:667-677.

148. Pérez-Morga, D., and Pays, E., (1999). A protein linked to mitochondrion development in Trypanosoma brucei. Mol. Biochem Parasitol 101:161-172.

149. Perron, M., Opdecamp, K., Butler, K., Harris, WA, and Bellefroid, E.J., (1999).

X-ngnr-1 and Xath3 promote ectopic expression of sensory neuron markers in the neurula ectoderm and have distinct inducing properties in the retina. PNAS 96:14996-15001

150. Petcherski, AG, and Kimble, J., (2000a). LAG-3 is a putative transcriptional activator in C.elegans Notch pathway. Nature 405:364-368.

(14)

151. Petcherski, AG, and Kimble, J., (2000b). Mastermind is a putative activator for Notch. Curr.Biol. 10:R471-R473.

152. Peunova, N., Scheinker, V., Cline, H., and Enikolopov, G., (2001). Nitric Oxide is an Essential Negative Regulator of Cell Proliferation in Xenopus Brain. The Journal of Neurosc.22:8809-8818.

153. Poortinga, G., Watanabe, M., and Parkhurst, SM, (1998). Drosophila CtBP: a Hairyinteracting protein required for embryonic segmentation and hairymediated transcriptional repression. EMBO J;17:2067-2078.

154. Pozzoli, O., Bosetti, A., Croci, L., Consalez, G.G., and Vetter, ML., (2001).

Xebf3 is a regulator of neuronal differentiation during primary neurogenesis in Xenopus. Dev Biol 233:495-512.

155. Qiu, Y., Sharma, A., and Stein, R., (1998). p300 Mediates Transcriptional Stimulation by the Basic Helix-Loop-Helix Activators of the Insulin Gene. Molecular and Cellular Biology 5:2957–2964.

156. Radtke, F., and Raj, K., (2003). The role of Notch in tumorigenesis: oncogene or tumour suppressor? Nat. Rev. Cancer 3, 756-767.

157. Rida, P.C., Le Minh, N., and Jiang, Y.J., (2004). A Notch feeling of somite segmentation and beyond. Dev. Biol. 265, 2-22.

158. Romm, E., Nielsen, J.A, Kim, J.G, Hudson, L.D, (2005). Myt1 family recruits histone deacetylase to regulate neural Transcription. Journal of Neurochemistry, 93, 1444–1453.

159. Rossetti, S., Hoogeveen, AT, and SacchiThe, N., (2004). MTG proteins:

chromatin repression players with a passion for networking. Genomics 84:1–9.

160. Rozen, S., and Skaletsky, H., (2000). Primer3 on the WWW for general users and for biologist programmers. Methods Mol. Biol. 132, 365.

161. Sadowski, I., and Ptashne, M., (1989). A vector for expressing GAL4(1-147) fusions in mammalian cells. Nucleic Acids Res. 17:7539.

162. Schaeper, U., Boyd, JM, Verma, S., Uhlmann, E., Subramanian, T., and Chinnadurai, G., (1995). Molecular cloning and characterization of a cellular phosphoprotein that interacts with a conserved C-terminal domain of adenovirus E1A involved in negative modulation of oncogenic transformation. Proc Natl Acad Sci USA;92:10467-10471.

(15)

163. Sewalt, RGAB, Gunster, MJ, van der Vlag, J., Satijn, DPE, and Otte, AP, (1999). C-Terminal Bonding Protein is a Transcriptional Repressor That Interact with a Specific Class of Vertebrate Polycomb Proteins. Mol.Cell.Biol.19:777-787.

164. Shawber, C.J., Das, I., Francisco, E., and Kitajewski, J., (2003). Notch signaling in primary endothelial cells. Ann. N. Y. Acad. Sci. 995:162-70., 162-170.

165. Sheng, G., dos Reis, M., and Stern, CD, (2003). Churchill, a zinc finger transcriptional activator, regulates the transition between gastrulation and neurulation. Cell 115:603-613.

166. Shih, J., and Fraser, S.E., (1996). Characterizing the zebrafish organizer:

microsurgical analysis at the early-shield stage. Development 122:1313-1322.

167. Sive, H.L., Grainger, R.M., and Harland, R.M., (2000). Early development of Xenopus laevis. A laboratory Manual. Cold Spring Harbor, NY: Cold Spring Harbor laboratory Press.

168. Smith, SJ, Kotecha, S., Towers, N., and Mohun, TJ., (2000). Xenopus Hand2 expression marks anterior vascular progenitors but not the developing heart. Dev Dyn.219(4):575-81.

169. Sollerbrant, K., Chinnadurai, and G., Svensson, C., (1996). The CtBP-binding domain in the adenovirus E1A protein controls CR1-dependent transactivation.

Nucleic Acids Res;24:2578-2584.

170. Soriano, P., and Hildebrand, J.D., (2002). Overlapping and unique roles for C- terminal binding protein (CtBP1) and CtBP2 during mouse development. Mol.Cell Biol., 22(15), 5296-5307.

171. Souopgui, J., Sölter, and M., Pieler, T., (2002). Xpak3 promotes cell cycle withdrawal during primary neurogenesis in Xenopus laevis. EMBO J. 21, 6429-6439.

172. Spemann, H., and Mangold, H., (1924). Uber induction von embryonanlagen durch implantation artfremder organisatoren. Arch. Mikr. Anat. Entw Mech.

100:599-638.

173. Stern, CD, (2005). Neural induction: old problem, new findings, yet more questions. Development 132:2007-2021.

174. Stewart, R.M., and Gerhart, J.C., (1990). The anterior extent of dorsal development of the xenopus embryonic axis depends on the quality of the organizer in the late blastula. Development, 109:363-372.

(16)

175. Stivers, C., Brody, T., Kuzin, A., and Odenwald, W.F., (2000). Nerfin-1 and -2, novel Drosophila Zn-finger transcription factor genes expressed in the developing nervous system. Mech. Dev. 97, 205–210.

176. Stordeur, P., Poulin, LF, Craciun, L., Zhou, L., Schandene, L., de Lavareille, A., Goriely, S., and Goldman, M.., (2002). Cytokine mRNA quantification by real-time PCR. J Immunol Methods 1;259(1-2):55-64.

177. Storey, K.G., Crossley, J.M., De Robertis, E.M., Norris, W.E., and Stern, C.D., (1992). Neural induction and regionalisation in the chick embryo. Development 114:729-741.

178. Streit, A., and Stern, C.D., (1999). Establishment and maintenance of the border of the neural plate in the chick: involvement of FGF and BMP activity.

Mech.Dev. 82,51-66.

179. Streit, A., Berliner, A.J., Papanayotou, C., Sirulnik, A., and Stern, C.D., (2000).

Initiation of neural induction by FGF signalling before gastrulation. Nature 406,74-78.

180. Sun, Y., Nadal-Vincens, M., Misono, S., Lin, M.Z., Zubiaga, A., Hua, X., Fan, G., and Greenberg, M.E., (2001). Neurogenin Promotes Neurogenesis and Inhibits Glial Differentiation by Independent Mechanisms. Cell, 104:365-376.

181. Sundqvist, A., Sollerbrant, K., and Svensson, C., (1998). The carboxy-terminal region of E1A activates transcription through targeting of a C-terminal binding protein-histone deacetylase complex. FEBS Lett. 429:183–188.

182. Sundqvist, A., Bajak, E., Kurup, SD, Sollerbrant, K., and Svensson, C., (2001).

Functional knockout of the corepressor CtBP by the second exon of adenovirus E1A relieves repression of transcription. Exp. Cell Res.268:284–293.

183. Takebayashi, K., Takahashi, S., Yokota, C., Tsuda, H., Nakanishi, S., Asashima, M., and Kageyama, R., 1997. Conversion of ectoderm into a neural fate by ATH-3, a vertebrate basic helix–loop–helix gene homologous to Drosophila proneural gene atonal. EMBO J. 16, 384–395.

184. Takizawa, T., Ochiai, W., Nakashima, K., and Taga, T., (2003). Enhanced gene activation by Notch and BMP signalling cross-talk. Nucleic Acids Res. 31, 5723- 5731.

185. Talikka, M., Stefani, G., Brivanlou, AH, and Zimmerman, K., (2004).

Characterization of Xenopus Phox2a and Phox2b defines expression domains within the embryonic nervous system and early heart field. Gene Expr Patterns, 4(5):601-607.

(17)

186. Taelman, V., Van Campenhout, C., Sölter, M., Pieler, T., and Bellefroid, E., (2006). The Notch-effector HRT1 gene plays a role in glomerular development and patterning of the Xenopus pronephros anlagen. Development 133(15):2961-2971.

187. Tang, K., Yang, J., Gao,X., Wang, C., Liu, L., Kitani, H., Atsumi, T., and Jinga, N., (2002). Wnt-1 promotes neuronal differentiation and inhibits gliogenesis in P19 cells. Biochemical and Biophysical Research Communications 293:167–173.

188. Turner, D.L., and Weintraub, H., (1994). Expression of achaete-scute-homolog 3 in Xenopus embryos converts ectodermal cells to a neural fate. Gene Dev. 8, 1434- 1447.

189. Turner, J., and Crossley, M., (1998). Cloning and characterization of mCtBP2, a co-repressor that associates with basic Krüppel-like factor and other mammalian transcriptional regulators. The EMBO Journal Vol.17 No.17 pp.5129–5140.

190. Turner, J., and Crossley, M., (2001). The CtBP family: enigmatic and enzymatic transcriptional repressors. BioEssays, 23(8), 683-690.

191. Van Campenhout, C., Nichane, M., Antoniou, A., Pendeville, H., Bronchain, O.J., Marine, JC, Mazabraud, A., Voz, M.L., and Bellefroid, E., 2006. Evi1 is specifically expressed in the distal tubule and duct of the Xenopus pronephros and plays a role in its formation. Developmental Biology 294, 203–219.

192. Van de Putte, T., Maruhashi, M., Francis, A., Nelles, L., Kondoh, H., Huylebroeck, D., and Higashi, Y., (2003). Mice lacking ZFHX1B, the gene that codes for Smad-interacting protein-1, reveal a role for multiple neural crest cell defects in the etiology of Hirschsprung disease-mental retardation syndrome. Am J Hum Genet 72:465–470.

193. Vandewalle, C., Comijn, J., De Craene, C., Vermassen, P., Bruyneel, E., Andersen, H., Tulchinsky, E., Van Roy, F., and Berx, G., (2005). SIP1/ZEB2 induces EMT by repressing genes of different epithelial cell-cell junctions. Nucl.Acids Res.

33:6566-6578.

194. van Grunsven, L., Papin, C., Avalosse, B., Opdecamp, K., Huylebroeck, D., Smith, JC, and Bellefroid, E., (2000). XSIP1, a Xenopus zinc finger/homeodomain encoding gene highly expressed during early neural development. Mech Dev 94:189- 193.

195. van Grunsven, L., Michiels, C., Van de Putte, T., Nelles, L., Wuytens, G., Verschueren, K., and Huylebroeck, D., (2003). Interaction between Smad-interacting

(18)

protein-1 and corepressor C-terminal binding protein is dispensable fir transcriptional repression of E-Cadherin. J.of Biol. Chem.,278,28:26135-26145.

196. van Grunsven, L., Taelman, V., Michiels, C., Opdecamp, K., Huylebroeck, D., and Bellefroid, E., (2006). Delta EF1 and SIP1 are differentially expressed and have overlapping activities during Xenopus embryogenesis. Dev Dyn. 235(6):1491-500.

197. van Grunsven, L., Taelman, V., Nichane, M., Souopgui, J., Michiels, C., Moens, E., Opdecamp, K., Verstappen, G., Bellefroid, E., and Huylebroek, D., (2006).

Sip1/Zfhx1b neuralizing activity requires the co-repressor CtBP and occurs through BMP dependent and independent mechanisms. En soumission.

198. van Hateren, N., Shenton, T., and Borycki, AG, (2006). Expression of Avian C- Terminal Binding Proteins (Ctbp1 and Ctbp2) During Embryonic Development.

Developmental Dynamics 235:490–495.

199. Van Wayenbergh, R., Taelman, V., Pichon, B., Fischer, A., Kricha, S., Gessler, M., Christophe, D., and Bellefroid, E., (2003). Identification of BOIP, a novel cDNA expressed during spermatogenesis that encodes a protein interacting with the Orange domain of the Hairy-related transcription factor HRT1/Hey1 in Xenopus and mouse.

Dev. Dynamics, 228:716-725.

200. Vernon, A.E., Devine, C., and Philpott, A., (2003). The cdk inhibitor p27Xic1 is required for differentiation of primary neurones in Xenopus. Development 130:85- 92.

201. Verschueren, K., Remacle, JE, Collart, C., Kraft, H., Baker, BS, Tylzanowski, P., Nelles, L., Wuytens, G., Su, MT, Bodmer, R., Smith, JC, and Huylebroeck, D., (1999). SIP1, a novel zinc finger/homeodomain repressor, interacts with Smad proteins and binds to 5'-CACCT sequences in candidate target genes. JBC 274:20489- 20498.

202. Vojtek, AB, Taylor, J., DeRuiter, SL, Yu, JY, Figueroa, C., Kwok, RKS, and Turner, DL, (2003). Akt Regulates Basic Helix-Loop-Helix Transcription Factor–

Coactivator Complex Formation and Activity during Neuronal Differentiation.

Molecular and Cellular Biology 23,13:4417–4427.

203. Wang, S., Zhang, J., Zhao, A., and Gu, G., (In press). Myelin transcription factor 1 is required for islet development and maintenance. Developmental Biology.

204. Weigert, R., Silletta, MG, Spano, S., Turacchio, G., Cericola, C., Colanzi, A., Senatore, S., Mancini, R., Polishchuk, EV, and Salmona, M., (1999). CtBP/BARS

(19)

induces fission of Golgi membranes by acylating lysophosphatidic acid. Nature;

402:429-433.

205. Weiner, J.A., and Chun, J., (1997). Png-1, a Nervous System – Specific Zinc Finger Gene, Identifies Regions Containing Postmitotic Neurons During Mammalian Embryonic Development. The Journal of Comparative Neurology,381,130-142

206. Wettstein, D.A., Turner, D.L., and Kintner, C., (1997). The Xenopus homolog of Drosophila Suppressor of Hairless mediates Notch signalling during primary neurogenesis. Development 124: 3177-3184.

207. Wolpert, L., (2002). Principles of development. Oxford University Press.

208. Wu, L., Aster, JC, Blacklow, SC, Lake, R., Artavanis-Tsakonas, S., and Griffin, JD, (2000). MAML-1, a human homologue of Drosophila mastermind, is a transcriptional co-activator for Notch receptors. Nature Genetics 26:484-489.

209. Wu, J., Duggan, A., and Calfie, M., (2001). Inhibition of touch cell fate by egl- 44 and egl-46 in C. elegans. Genes Dev. 15, 789–802.

210. Xie, J., Cai, T., Zhang, H., Lan, M.S., and Notkins, A.L., (2002). The zinc- finger transcription factor INSM1 is expressed during embryo development and interacts with the Cb1-associated protein. Genomics 80,54–61.

211. Xu, Y., Wang, S., Zhang, J., Zhao, A., Stanger, B., Gu, G., (2006). The fringe molecules induce endocrine differentiation in embryonic endoderm by activating cMyt1/cMyt3. Dev. Biol. Epub ahead of print.

212. Yee, K.S., and Yu, V.C., (1998). Isolation and characterization of a novel member of the neural Zinc Finger factor/myelin transcription factor family with transcriptional repression activity. J. Biol. Chem., 273 (9), 5366-5374.

213. Yoshimoto, A., Saigou, Y., Higashi, Y., and Kondoh, H., (2005). Regulation of ocular lens development by Smad-interacting protein 1 involving in Foxe3 activation.

Development 132(20):4437-4448.

214. Zhang, CL, McKinsey, TA, Lu, Jr, and Olson, EN, (2000). Association of the CtBP and MITR corepressors contributes to transcriptional repression of the MEF2 transcription factor. J Biol Chem; 276:35-39.

215. Zhang, CL, McKinsey, TA, Lu, JR, and Olson, E, (2001). Association of COOH-terminal-binding protein (CtBP) and MEF2-interacting transcription repressor (MITR) contributes to the transcriptional repression of the MEF2 transcription factor. J. Biol. Chem.276:35–39.

(20)

216. Zhou, S., Fujimuro, M., Hseih, JJ, Chen, L., Miyamoto, A., Weinmaster, G., and Hayward, SD, (2000). SKIP, a CBF1-associated protein, interacts with the ankyrin repeat domain of NotchICD to facilitate NotchICD function.

Mol.Cell.Biol.20:2400-2410.

217. Zimmerman, LB, De Jesus-Escobar, JM, and Harland, RM, (1996). The Spemann organizer signal noggin binds and inactivates bone morphogenetic protein 4.

Cell 86:599-606.

218. Zimmerman, K., Shih, J., Bars, J., Collazo, A., and Anderson, D.J., 1993.

XASH-3, a novel Xenopus achaete-scute homolog, provides an early marker of planar neural induction and position along the mediolateral axis of the neural plate.

Development 119, 221–232.

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