195
GRNs Controlling Xenopus Embryogenesis
Suri, C., T. Haremaki, and D.C. Weinstein. 2005. Xema, a foxi-class
gene expressed in the gastrula stage Xenopus ectoderm, is
required for the suppression of mesendoderm. Development
132:2733–2742.
von Bubnoff, A., D.A. Peiffer, I.L. Blitz, T. Hayata, S. Ogata,
Q. Zeng, M. Trunnell, and K.W. Cho. 2005. Phylogenetic
footprinting and genome scanning identify vertebrate BMP
response elements and new target genes. Dev Biol 281:
210–226.
Watabe, T., S. Kim, A. Candia, U. Rothbächer, C. Hashimoto,
K. Inoue, and K.W.Y. Cho. 1995. Molecular mechanisms
of Spemann’s organizer formation: Conserved growth factor synergy between Xenopus and mouse. Genes Dev
9:3038–3050.
White, J.T., B. Zhang, M.D. Cerqueira, U. Tran, and O. Wessely.
2010. Notch signaling, wt1 and foxc2 are key regulators of the podocyte gene regulatory network in Xenopus.
Development 137:1863–1873.
Xanthos, J.B., M. Kofron, C. Wylie, and J. Heasman. 2001. Maternal
VegT is the initiator of a molecular network specifying endoderm in Xenopus laevis. Development 128:167–180.
Yao, J., and D.S. Kessler. 2001. Goosecoid promotes head organizer activity by direct repression of Xwnt8 in Spemann’s
organizer. Development 128:2975–2987.
Yasuoka, Y., Y. Suzuki, S. Takahashi, H. Someya, N. Sudou, Y.
Haramoto, K.W. Cho, M. Asashima, S. Sugano, and M. Taira.
2014. Occupancy of tissue-specifc cis-regulatory modules
by Otx2 and TLE/Groucho for embryonic head specif cation.
Nat Commun 5:4322.
Zhang, J., D.W. Houston, M.L. King, C. Payne, C. Wylie, and J.
Heasman. 1998. The role of maternal VegT in establishing the primary germ layers in Xenopus embryos. Cell 94:
515–524.
Zuber, M.E., G. Gestri, A.S. Viczian, G. Barsacchi, and W.A. Harris.
2003. Specifcation of the vertebrate eye by a network of eye
feld transcription factors. Development 130:5155–5167.
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