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全基因组 RNAi 筛选促进 par 突变体的实验揭示了秀丽隐杆线虫早期胚胎极性形成的新贡献因子。

A genome-wide RNAi screen for enhancers of par mutants reveals new contributors to early embryonic polarity in Caenorhabditis elegans.

机构信息

Department of Molecular Biology and Genetics, Cornell University, Ithaca, New York 14853, USA.

出版信息

Genetics. 2012 Nov;192(3):929-42. doi: 10.1534/genetics.112.143727. Epub 2012 Aug 10.

Abstract

The par genes of Caenorhabditis elegans are essential for establishment and maintenance of early embryo polarity and their homologs in other organisms are crucial polarity regulators in diverse cell types. Forward genetic screens and simple RNAi depletion screens have identified additional conserved regulators of polarity in C. elegans; genes with redundant functions, however, will be missed by these approaches. To identify such genes, we have performed a genome-wide RNAi screen for enhancers of lethality in conditional par-1 and par-4 mutants. We have identified 18 genes for which depletion is synthetically lethal with par-1 or par-4, or both, but produces little embryo lethality in wild type. Fifteen of the 18 genes identified in our screen are not previously known to function in C. elegans embryo polarity and 11 of them also increase lethality in a par-2 mutant. Among the strongest synthetic lethal genes, polarity defects are more apparent in par-2 early embryos than in par-1 or par-4, except for strd-1(RNAi), which enhances early polarity phenotypes in all three mutants. One strong enhancer of par-1 and par-2 lethality, F25B5.2, corresponds to nop-1, a regulator of actomyosin contractility for which the molecular identity was previously unknown. Other putative polarity enhancers identified in our screen encode cytoskeletal and membrane proteins, kinases, chaperones, and sumoylation and deubiquitylation proteins. Further studies of these genes should give mechanistic insight into pathways regulating establishment and maintenance of cell polarity.

摘要

秀丽隐杆线虫的 par 基因对于早期胚胎极性的建立和维持是必需的,它们在其他生物体中的同源物是多种细胞类型中关键的极性调节因子。正向遗传学筛选和简单的 RNAi 耗竭筛选已经确定了秀丽隐杆线虫中额外的保守极性调节因子;然而,这些方法会错过具有冗余功能的基因。为了鉴定这些基因,我们对条件性 par-1 和 par-4 突变体中的致死性增强子进行了全基因组 RNAi 筛选。我们已经鉴定了 18 个基因,这些基因的缺失与 par-1 或 par-4 或两者都具有合成致死性,但在野生型中几乎没有胚胎致死性。我们筛选中鉴定的 18 个基因中有 15 个以前不知道在秀丽隐杆线虫胚胎极性中发挥作用,其中 11 个也增加了 par-2 突变体的致死性。在最强的合成致死基因中,除了 strd-1(RNAi) 外,par-2 早期胚胎中的极性缺陷比 par-1 或 par-4 更明显,strd-1(RNAi) 在所有三种突变体中增强了早期极性表型。F25B5.2 是 par-1 和 par-2 致死性的一个强有力增强子,它对应于 nop-1,nop-1 是肌动球蛋白收缩的调节因子,其分子身份以前是未知的。我们筛选中鉴定的其他假定的极性增强因子编码细胞骨架和膜蛋白、激酶、伴侣蛋白、SUMO 化和去泛素化蛋白。对这些基因的进一步研究应该为调节细胞极性建立和维持的途径提供机制上的见解。

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