首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >A genomewide RNAi screen for genes that affect the stability, distribution and function of P granules in Caenorhabditis elegans.
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A genomewide RNAi screen for genes that affect the stability, distribution and function of P granules in Caenorhabditis elegans.

机译:全基因组RNAi筛查影响秀丽隐杆线虫P颗粒的稳定性,分布和功能的基因。

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P granules are non-membrane-bound organelles found in the germ-line cytoplasm throughout Caenorhabditis elegans development. Like their "germ granule" counterparts in other animals, P granules are thought to act as determinants of the identity and special properties of germ cells, properties that include the unique ability to give rise to all tissues of future generations of an organism. Therefore, understanding how P granules work is critical to understanding how cellular immortality and totipotency are retained, gained, and lost. Here we report on a genomewide RNAi screen in C. elegans, which identified 173 genes that affect the stability, localization, and function of P granules. Many of these genes fall into specific classes with shared P-granule phenotypes, allowing us to better understand how cellular processes such as protein degradation, translation, splicing, nuclear transport, and mRNA homeostasis converge on P-granule assembly and function. One of the more striking phenotypes is caused by the depletion of CSR-1, an Argonaute associated with an endogenous siRNA pathway that functions in the germ line. We show that CSR-1 and two other endo-siRNA pathway members, the RNA-dependent RNA polymerase EGO-1 and the helicase DRH-3, act to antagonize RNA and P-granule accumulation in the germ line. Our findings strengthen the emerging view that germ granules are involved in numerous aspects of RNA metabolism, including an endo-siRNA pathway in germ cells.
机译:P颗粒是在整个秀丽隐杆线虫发育过程中在种系细胞质中发现的非膜结合细胞器。像其他动物的“生殖颗粒”一样,P颗粒被认为是生殖细胞身份和特殊特性的决定因素,这些特性包括产生生物体后代的所有组织的独特能力。因此,了解P颗粒的工作方式对于了解如何保留,获得和失去细胞永生性和全能性至关重要。在这里,我们报告线虫中的全基因组RNAi筛查,该筛查确定了173个影响P颗粒的稳定性,定位和功能的基因。这些基因中的许多基因属于具有共享的P颗粒表型的特定类别,从而使我们能够更好地了解细胞降解过程,如蛋白质降解,翻译,剪接,核转运和mRNA稳态如何在P颗粒的组装和功能上收敛。更为引人注目的表型之一是由于CSR-1的耗竭而造成的,CSR-1是与在种系中起作用的内源性siRNA途径相关的Argonaute。我们表明,CSR-1和其他两个内在的siRNA途径成员,依赖RNA的RNA聚合酶EGO-1和解旋酶DRH-3,起到拮抗种系中RNA和P颗粒积累的作用。我们的发现强化了一种新的观点,即胚芽颗粒参与RNA代谢的许多方面,包括生殖细胞中的内源性siRNA途径。

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