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nanos2 的 3'UTR 指导海胆生殖细胞系的富集。

The 3'UTR of nanos2 directs enrichment in the germ cell lineage of the sea urchin.

机构信息

Department of Molecular and Cell Biology and Biochemistry, Brown University, 185 Meeting Street, Providence, RI 02912, USA.

出版信息

Dev Biol. 2013 May 1;377(1):275-83. doi: 10.1016/j.ydbio.2013.01.019. Epub 2013 Jan 25.

Abstract

Nanos is a translational regulator required for the survival and maintenance of primordial germ cells during embryogenesis. Three nanos homologs are present in the genome of the sea urchin Strongylocentrotus purpuratus (Sp), and each nanos mRNA accumulates specifically in the small micromere (sMic) lineage. We found that a highly conserved element in the 3' UTR of nanos2 is sufficient for reporter expression selectively in the sMic lineage: microinjection into a Sp fertilized egg of an RNA that contains the GFP open reading frame followed by Sp nanos2 3'UTR leads to selective reporter enrichment in the small micromeres in blastulae. The same result was seen with nanos2 from the sea urchin Hemicentrotus pulcherrimus (Hp). In both species, the 5'UTR alone is not sufficient for the sMic localization but it always increased the sMic reporter enrichment when present with the 3'UTR. We defined an element conserved between Hp and Sp in the nanos2 3'UTR which is necessary and sufficient for protein enrichment in the sMic, and refer to it as GNARLE (Global Nanos Associated RNA Lability Element). We also found that the nanos2 3'UTR is essential for the selective RNA retention in the small micromeres; GNARLE is required but not sufficient for this process. These results show that a combination of selective RNA retention and translational control mechanisms instills nanos accumulation uniquely in the sMic lineage.

摘要

Nanos 是一种翻译调节因子,对于胚胎发生过程中原始生殖细胞的存活和维持是必需的。海胆 Strongylocentrotus purpuratus (Sp) 的基因组中存在三个 nanos 同源物,每个 nanos mRNA 特异性地积累在小原生殖细胞 (sMic) 谱系中。我们发现,nanos2 的 3'UTR 中高度保守的元件足以在 sMic 谱系中选择性地表达报告基因:将包含 GFP 开放阅读框的 RNA 显微注射到 Sp 受精卵中,该 RNA 紧随 Sp nanos2 3'UTR 之后,导致在囊胚中小原生殖细胞中选择性地富集报告基因。同样的结果也见于海胆 Hemicentrotus pulcherrimus (Hp) 的 nanos2。在这两个物种中,单独的 5'UTR 不足以进行 sMic 定位,但当与 3'UTR 一起存在时,总是会增加 sMic 报告基因的富集。我们在 Hp 和 Sp 的 nanos2 3'UTR 之间定义了一个保守元件,该元件对于蛋白质在 sMic 中的富集是必要和充分的,我们称之为 GNARLE(全球 Nanos 相关 RNA 不稳定性元件)。我们还发现,nanos2 3'UTR 对于小原生殖细胞中选择性 RNA 保留是必需的;GNARLE 是必需的,但不是这个过程的充分条件。这些结果表明,选择性 RNA 保留和翻译控制机制的结合使 nanos 独特地积累在 sMic 谱系中。

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