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在非洲爪蟾发育过程中 XDppa2/4 结构域的功能剖析。

Functional dissection of XDppa2/4 structural domains in Xenopus development.

机构信息

Institute of Biochemistry, University of Ulm, Albert-Einstein-Allee 11, D-89081 Ulm, Germany.

出版信息

Mech Dev. 2009 Dec;126(11-12):974-89. doi: 10.1016/j.mod.2009.09.007. Epub 2009 Sep 20.

Abstract

The maintenance of pluripotency in mammalian embryonic stem cells depends upon the expression of regulatory genes like Oct3/4 and Sox2. While homologues of these genes are also characterized in non-mammalian vertebrates, like birds, amphibians and fish, existence and function of developmental pluripotency associated genes (Dppa) in lower vertebrates have not yet been reported. Here we describe a Dppa2/4-like gene, XDppa2/4, in Xenopus. The protein contains a SAP domain and a conserved C-terminal region. Overexpression of XDppa2/4, murine Dppa2 or Dppa4 produces similar phenotypes (defects in blastopore closure), while injection of XDppa2/4 morpholino generates a loss of blastopore closure and neural fold formation. Embryos die up to tailbud stage. mDppa2 (but not mDppa4) rescues blastopore closure and neurulation defects caused by XDppaMO, but does not prevent subsequent death of embryos. Although XDppa2/4 exhibits a Dppa-like expression pattern and is indispensable for embryogenesis, analyses of various marker genes make its role as a pluripotency factor rather unlikely. Both the gain and loss of function effects until the end of neurulation are caused by the conserved C-terminal region but not by the SAP domain. The SAP domain is required for association of XDppa2/4 to chromatin and for embryonic survival at later stages of development suggesting epigenetic programming events.

摘要

哺乳动物胚胎干细胞的多能性维持依赖于调节基因的表达,如 Oct3/4 和 Sox2。虽然这些基因的同源物也在非哺乳动物脊椎动物中被描述,如鸟类、两栖类和鱼类,但在较低等的脊椎动物中,发育多能性相关基因(Dppa)的存在和功能尚未被报道。在这里,我们描述了非洲爪蟾中的一个 Dppa2/4 样基因 XDppa2/4。该蛋白含有一个 SAP 结构域和一个保守的 C 端区域。过表达 XDppa2/4、鼠源 Dppa2 或 Dppa4 会产生类似的表型(胚孔闭合缺陷),而注射 XDppa2/4 形态发生素会导致胚孔闭合和神经褶形成的缺失。胚胎死亡至尾芽期。mDppa2(而不是 mDppa4)可以挽救 XDppaMO 引起的胚孔闭合和神经管形成缺陷,但不能防止胚胎随后死亡。尽管 XDppa2/4 表现出类似于 Dppa 的表达模式,对胚胎发生是不可或缺的,但对各种标记基因的分析使其作为多能性因子的作用不太可能。从胚孔闭合到神经管形成结束的功能获得和丧失效应都是由保守的 C 端区域而不是 SAP 结构域引起的。SAP 结构域对于 XDppa2/4 与染色质的结合以及胚胎在发育后期的存活是必需的,这表明存在表观遗传编程事件。

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