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非洲爪蟾中胚层形成过程中FGF下游:Elk-1和Egr-1的作用

Downstream of FGF during mesoderm formation in Xenopus: the roles of Elk-1 and Egr-1.

作者信息

Nentwich Oliver, Dingwell Kevin S, Nordheim A, Smith J C

机构信息

Wellcome Trust/Cancer Research UK Gurdon Institute and Department of Zoology, University of Cambridge, Tennis Court Road, Cambridge CB2 1QN, UK.

出版信息

Dev Biol. 2009 Dec 15;336(2):313-26. doi: 10.1016/j.ydbio.2009.09.039. Epub 2009 Sep 30.

Abstract

Signalling by members of the FGF family is required for induction and maintenance of the mesoderm during amphibian development. One of the downstream effectors of FGF is the SRF-interacting Ets family member Elk-1, which, after phosphorylation by MAP kinase, activates the expression of immediate-early genes. Here, we show that Xenopus Elk-1 is phosphorylated in response to FGF signalling in a dynamic pattern throughout the embryo. Loss of XElk-1 function causes reduced expression of Xbra at neurula stages, followed by a failure to form notochord and muscle and then the partial loss of trunk structures. One of the genes regulated by XElk-1 is XEgr-1, which encodes a zinc finger transcription factor: we show that phosphorylated XElk-1 forms a complex with XSRF that binds to the XEgr-1 promoter. Superficially, Xenopus tropicalis embryos with reduced levels of XEgr-1 resemble those lacking XElk-1, but to our surprise, levels of Xbra are elevated at late gastrula stages in such embryos, and over-expression of XEgr-1 causes the down-regulation of Xbra both in whole embryos and in animal pole regions treated with activin or FGF. In contrast, the myogenic regulatory factor XMyoD is activated by XEgr-1 in a direct manner. We discuss these counterintuitive results in terms of the genetic regulatory network to which XEgr-1 contributes.

摘要

在两栖动物发育过程中,中胚层的诱导和维持需要FGF家族成员进行信号传导。FGF的下游效应器之一是与SRF相互作用的Ets家族成员Elk-1,它在被MAP激酶磷酸化后,激活立即早期基因的表达。在这里,我们表明非洲爪蟾Elk-1在整个胚胎中对FGF信号作出反应,以动态模式被磷酸化。XElk-1功能丧失导致神经胚阶段Xbra表达减少,随后无法形成脊索和肌肉,进而导致躯干结构部分缺失。受XElk-1调控的基因之一是XEgr-1,它编码一种锌指转录因子:我们表明磷酸化的XElk-1与XSRF形成复合物,该复合物与XEgr-1启动子结合。表面上看,XEgr-1水平降低的热带爪蟾胚胎类似于缺乏XElk-1的胚胎,但令我们惊讶的是,在此类胚胎的原肠胚晚期阶段,Xbra水平升高,并且在全胚胎以及用激活素或FGF处理的动物极区域中,XEgr-1的过表达导致Xbra下调。相反,成肌调节因子XMyoD被XEgr-1直接激活。我们根据XEgr-1所参与的遗传调控网络来讨论这些违反直觉的结果。

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