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秀丽隐杆线虫卵子发生过程中,P小体蛋白CGH-1(Dhh1/RCK)对特定母体信使核糖核酸的保护作用。

Protection of specific maternal messenger RNAs by the P body protein CGH-1 (Dhh1/RCK) during Caenorhabditis elegans oogenesis.

作者信息

Boag Peter R, Atalay Arzu, Robida Stacey, Reinke Valerie, Blackwell T Keith

机构信息

Joslin Diabetes Center, Harvard Stem Cell Institute, and 2Department of Pathology, Harvard Medical School, Boston, MA 02215, USA.

出版信息

J Cell Biol. 2008 Aug 11;182(3):543-57. doi: 10.1083/jcb.200801183.

Abstract

During oogenesis, numerous messenger RNAs (mRNAs) are maintained in a translationally silenced state. In eukaryotic cells, various translation inhibition and mRNA degradation mechanisms congregate in cytoplasmic processing bodies (P bodies). The P body protein Dhh1 inhibits translation and promotes decapping-mediated mRNA decay together with Pat1 in yeast, and has been implicated in mRNA storage in metazoan oocytes. Here, we have investigated in Caenorhabditis elegans whether Dhh1 and Pat1 generally function together, and how they influence mRNA sequestration during oogenesis. We show that in somatic tissues, the Dhh1 orthologue (CGH-1) forms Pat1 (patr-1)-dependent P bodies that are involved in mRNA decapping. In contrast, during oogenesis, CGH-1 forms patr-1-independent mRNA storage bodies. CGH-1 then associates with translational regulators and a specific set of maternal mRNAs, and prevents those mRNAs from being degraded. Our results identify somatic and germ cell CGH-1 functions that are distinguished by the involvement of PATR-1, and reveal that during oogenesis, numerous translationally regulated mRNAs are specifically protected by a CGH-1-dependent mechanism.

摘要

在卵子发生过程中,大量信使核糖核酸(mRNA)维持在翻译沉默状态。在真核细胞中,各种翻译抑制和mRNA降解机制聚集在细胞质加工小体(P小体)中。酵母中的P小体蛋白Dhh1与Pat1共同抑制翻译并促进脱帽介导的mRNA降解,并且在后生动物卵母细胞的mRNA储存中发挥作用。在此,我们研究了秀丽隐杆线虫中Dhh1和Pat1是否通常共同发挥作用,以及它们在卵子发生过程中如何影响mRNA隔离。我们发现,在体细胞组织中,Dhh1的直系同源物(CGH-1)形成依赖Pat1(patr-1)的P小体,参与mRNA脱帽。相反,在卵子发生过程中,CGH-1形成不依赖patr-1的mRNA储存小体。然后,CGH-1与翻译调节因子和一组特定的母源mRNA结合,并防止这些mRNA被降解。我们的结果确定了由PATR-1参与所区分的体细胞和生殖细胞CGH-1的功能,并揭示在卵子发生过程中,许多受翻译调控的mRNA通过一种依赖CGH-1的机制得到特异性保护。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc53/2500139/c3d4a8869ff8/jcb1820543f01.jpg

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