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Morita H, Nandadasa S, Yamamoto T, Terasaka-Iioka C, Wylie C, Ueno N. Nectin-2 and N-cadherin interact through extracellular domains and induce apical accumulation of F-actin in apical constriction of Xenopus neural tube. Development. 137: 1315-25. 2010.
Dahia C, Mahoney E, Durrani A, Wylie C. Intercellular signaling pathways active during and after growth and differentiation of the lumbar vertebral growth plate. Spine. Jun, 2011.
Kennedy MW, Cha SW, Tadjuidje E, Andrews PG, Heasman J, Kao KR. A co-dependent requirement of xBcl9 and Pygopus for embryonic body axis development in Xenopus. Dev Dyn. 2010 239(1):271-83. 2010.
Cha SW, Heasman J. Using oocytes for Wnt signaling assays: paracrine assays and Wnt-conditioned medium. Methods. 51(1):52-5. 2010.
Blythe SA, Cha SW, Tadjuidje E, Heasman J, Klein, PS. beta-Catenin primes organizer gene expression by recruiting a histone H3 arginine 8 methyltransferase, Prmt2. Dev Cell. 19(2)220-31. Aug 17, 2010.
White JA, Heasman J. Maternal control of pattern formation in Xenopus laevis. J Exp Zool B Mol Dev Evol. 310(1):73-84. Jan 15, 2008.
Mir A, Kofron M, Heasman J, Mogle M, Lang S, Birsoy B, Wylie C. Long- and short-range signals control the dynamic expression of an animal hemisphere-specific gene in Xenopus. Developmental Biology. 315. 161-72. 2008.
Runyan C, Gu Y, Shoemaker A, Looijenga L, Wylie C. The distribution and behaviour of extragonadal primordial germ cells in Bax mutant mice suggest a novel origin for sacrococcygeal germ cell tumors. Int. J. Dev. Biol. 52. 333-44. 2008.
Deng J, Lang S, Wylie C, Hammes S. The Xenopus laevis isoform of G protein-coupled receptor 3 (GPR3) is a constitutively active cell surface receptor that participates in maintaining meiotic arrest in X. laevis oocytes. Mol. Endocrinol. 22, 1853-1865. 2008.
Cha SW, Tadjuidje E, Tao Q, Wylie C, Heasman J. Wnt5a and Wnt11 interact in a maternal Dkk1-regulated fashion to activate both canonical and non-canonical signaling in Xenopus axis formation. Development. 135(22):3719-29. Nov, 2008.
Mir A, Heasman J. How the mother can help: studying maternal Wnt signaling by anti-sense-mediated depletion of maternal mRNAs and the host transfer technique. Methods Mol Biol. 469:417-29. 2008.
Souopgui J, Rust B, Vanhomwegen J, Heasman J, Henningfeld KA, Bellefroid E, Pieler T. The RNA-binding protein XSeb4R: a positive regulator of VegT mRNA stability and translation that is required for germ layer formation in Xenopus. Genes Dev. 22(17):2347-52. Sep 1, 2008.
Kofron M, Birsoy B, Houston D, Tao Q, Wylie C, Heasman J. Wnt11/beta-catenin signaling in both oocytes and early embryos acts through LRP6-mediated regulation of axin. Development. 134(3):503-13. Feb, 2007.
Mir A, Kofron M, Zorn A, Bajzer M, Haque M, Heasman J, Wylie C. FoxI1e activates ectoderm formation and controls cell position in the Xenopus blastula. Development. 134: 779-788. 2007.
Tao Q, Nandadasa S, McCrea P, Heasman J, Wylie C. G protein-coupled signals control cortical actin assembly by controlling cadherin expression in the early Xenopus embryo. Development. 134: 2651-61. 2007.
Cha JY, Birsoy B, Kofron M, Lang S, Wylie C, Heasman J. The role of FoxC1 in early Xenopus development. Dev Dyn. 236, 2731-41. 2007.
Pérez O, Benítez MS, Nath K, Heasman J, Del Pino EM, Elinson RP. Comparative analysis of Xenopus VegT, the meso-endodermal determinant, identifies an unusual conserved sequence. Differentiation. 75(6):559-65. Jul, 2007.
NIH RO1 HD044764: The control of actin assembly in Xenopus embryos (to 2013) PI
NIH RO1 HD45737: Ectoderm formation in the early Xenopus embryo (to 2013) PI
NIH RO1 AR056943: A developmentally based tissue engineering approach to improve tendon repair (to 2013) Co-PI
NIH RO1 HD060578: The roles of Steel factor in germ cell behavior in the mouse (to 2011) PI
NIH T32 HD046387: Training grant in organogenesis (to 2010) PI
Chris Wylie, PhDPhone: 513-636-4473Email: email@example.com
Janet Heasman, PhDPhone: 513-636-8564Email: firstname.lastname@example.org
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