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Dkk1 domains in heart induction and axial development in Xenopus laevis.

机译:非洲爪蟾心脏诱导和轴向发育中的Dkk1域。

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摘要

This thesis investigates mechanisms of Dickkopf-1 (Dkk1) action in heart development. Dkk1 is notable for being able to initiate heart development in normally non-cardiogenic mesoderm of Xenopus laevis and recapitulate normal program up to and including formation of a beating heart tube. Although Dkk1 is a secreted antagonist of canonical Wnt signaling pathway, its heart-forming ability may require additional signaling. Since Wnt-antagonism of Dkk1 is mediated by the C-terminal cysteine-rich domain of Dkk1 (C1), we focused in particular on Dkk1's other cysteine-rich domain, the N-terminal domain (N1).;In a quantitative assay measuring Wnt activity, N1 interfered with signaling of some canonical Wnts, such as Wnt8, but much less efficiently than C1. N1's ability to interfere with Wnt8 signaling, however, did not extend to all canonical Wnts: Wnt3a was not antagonized by N1. In contrast to intact Dkk1, C1 domain alone also differentially antagonized Wnt8 and Wnt3a. Dkk1 was shown to activate cJun terminal kinase (JNK), both in Xenopus embryos and in tumor cell lines. Our studies indicate that both domains of Dkk1 can induce JNK activation in Xenopus.;Previous studies have shown that injection of N1 domain did not alter gross morphology of the embryo, suggesting that N1 may be inert. In Chapter 3, I show that N1 possesses biological activity in the embryo. First, N1 cooperated with truncated bone morphogenetic protein receptor (tBR) to maintain markers of axial and prechordal mesoderm. N1 also cooperated with several Wnt antagonists in the context of BMP inhibition to expand the expression domain of markers of axial and prechordal mesoderm, as well as to increase the frequency of heart marker expression. N1 also cooperated with Wnt antagonists Crescent and C1 to increase the extent of heart marker induction in ventral marginal zone (VMZ) explants. During early stages of gastrulation, N1 altered some markers of the dorsal-ventral patterning, either alone or in combination with BMP inhibition. These data suggest that N1 possesses novel activity and that Dkk1 has to be considered not a simple Wnt antagonist but a dual-function protein.
机译:本文研究了Dickkopf-1(Dkk1)在心脏发育中的作用机制。 Dkk1以能够在非洲爪蟾的正常非心源性中胚层中启动心脏发育并概括直至跳动的心管并包括其形成的正常程序而着称。虽然Dkk1是经典Wnt信号传导途径的分泌拮抗剂,但其心脏形成能力可能需要其他信号传导。由于Dkk1的Wnt拮抗作用是由Dkk1的C端富含半胱氨酸的结构域(C1)介导的,因此我们特别关注Dkk1的另一个富含半胱氨酸的域N末端的结构域(N1)。 Wnt活动中,N1干扰了某些经典Wnt(例如Wnt8)的信号传导,但效率远低于C1。 N1干扰Wnt8信号的能力并未扩展到所有规范的Wnt:Wnt3a没有被N1拮抗。与完整的Dkk1相比,单独的C1域也差异化拮抗Wnt8和Wnt3a。已显示Dkk1在非洲爪蟾胚胎和肿瘤细胞系中均激活cJun末端激酶(JNK)。我们的研究表明Dkk1的两个结构域均可诱导非洲爪蟾的JNK激活。先前的研究表明,注入N1结构域不会改变胚胎的总体形态,这表明N1可能是惰性的。在第3章中,我证明N1在胚胎中具有生物活性。首先,N1与截短的骨形态发生蛋白受体(tBR)协同作用,以维持轴向和前中胚层的标记。在BMP抑制的背景下,N1还与几种Wnt拮抗剂合作,以扩大轴突和前中胚层标记的表达域,并增加心脏标记的表达频率。 N1还与Wnt拮抗剂Crescent和C1合作,以增加腹侧边缘区(VMZ)外植体中心脏标志物的诱导程度。在胃形成的早期阶段,N1单独或与BMP抑制一起改变了背腹模式的某些标志物。这些数据表明,N1具有新颖的活性,必须将Dkk1视为不是简单的Wnt拮抗剂,而是一种双功能蛋白。

著录项

  • 作者

    Korol, Oksana.;

  • 作者单位

    Harvard University.;

  • 授予单位 Harvard University.;
  • 学科 Biology Cell.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 134 p.
  • 总页数 134
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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