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[动物生殖细胞系确定的分子机制]

[Molecular mechanisms of germ cell line determination in animals].

作者信息

Berekelia L A, Ponomarev M B, Mikriukov A A, Luchinskaia N N, Beliavskiĭ A V

出版信息

Mol Biol (Mosk). 2005 Jul-Aug;39(4):664-77.

Abstract

In the present work, principles of formation of germ line cells are reviewed. Germ line cells separate themselves from the rest of the embryo at the early stages of embryogenesis. In certain animal groups, formation of precursors of germ cells occurs by induction by surrounding cells. However, for most animal taxons, formation of primordial germ cells (PGCs) is determined by inheritance of certain maternal determinants--the so-called germ plasm. It is formed by mitochondria, electron-dense granules with the complex structure, and maternal RNAs and proteins necessary for formation of germ line. In Xenopus, the source of material for germ plasm is a mitochondrial cloud, which also specifically binds and transports to the vegetal pole maternal RNAs important for PGC formation. Cis elements determining the transport of these RNAs are usually located in the 3' untranslated region of RNA, and their function is mediated by binding of trans acting protein factors. In addition to a specific localization of certain macromolecules in germ plasm, special status of germ line cells is provided by degradation of RNA and protein components of germ plasm in somatic cells, silencing of transcription in PGCs until advanced stages of embryogenesis, and specific regulation of RNA translation in somatic and germ cells. In this review, we also briefly discuss results obtained by authors regarding the properties of a novel component of Xenopus germ plasm, namely maternal RNA germes, and encoded protein.

摘要

在本研究中,我们回顾了生殖系细胞的形成原理。生殖系细胞在胚胎发育的早期阶段与胚胎的其他部分分离。在某些动物群体中,生殖细胞前体的形成是由周围细胞诱导产生的。然而,对于大多数动物分类群来说,原始生殖细胞(PGC)的形成是由某些母体决定因素——即所谓的生殖质的遗传所决定的。它由线粒体、结构复杂的电子致密颗粒以及生殖系形成所需的母体RNA和蛋白质组成。在非洲爪蟾中,生殖质的物质来源是线粒体云,它还能特异性地结合并将对PGC形成重要的母体RNA转运到植物极。决定这些RNA转运的顺式元件通常位于RNA的3'非翻译区,其功能是由反式作用蛋白因子的结合介导的。除了某些大分子在生殖质中的特定定位外,生殖系细胞的特殊状态还通过生殖质的RNA和蛋白质成分在体细胞中的降解、PGC中直到胚胎发育后期的转录沉默以及体细胞和生殖细胞中RNA翻译的特定调节来实现。在这篇综述中,我们还简要讨论了作者关于非洲爪蟾生殖质的一种新成分,即母体RNA生殖小体及其编码蛋白的特性所获得的结果。

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