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果蝇RNA结合蛋白Lark在卵子发生过程中对于肌动蛋白细胞骨架的组织和“糊涂太少”定位是必需的。

The Drosophila RNA-binding protein Lark is required for the organization of the actin cytoskeleton and Hu-li tai shao localization during oogenesis.

作者信息

McNeil Gerard P, Smith Fiona, Galioto Robert

机构信息

Department of Natural Sciences, York College, City University of New York, Jamaica, NY 11451, USA.

出版信息

Genesis. 2004 Oct;40(2):90-100. doi: 10.1002/gene.20069.

Abstract

Elimination of maternal expression of the Drosophila RNA-binding protein Lark results in female sterility. Here we show that this is due to a requirement during oogenesis. Developing oocytes from lark(1) germline clones (GLCs) are often smaller than normal due to defects in nurse cell cytoplasmic "dumping." Late-stage egg chambers from lark(1) GLCs contain low levels of cortical and ring canal associated actin and completely lack nurse cell cytoplasmic F-actin bundles, suggesting the "dumping" phenotype is due to a defect in the actin cytoskeleton. Localization of Hu-li tai shao (Hts) protein, a component of ring canals, is also disrupted in these mutants. In addition to the dumpless phenotype, we observed a buildup of late-stage egg chambers, a phenotype that correlates with the decrease in egg-laying observed in the mutants. We postulate that this phenotype is due to defects in the cytoskeletal integrity of eggs since retained and oviposited eggs are fragile and often deflated. These mutant phenotypes are likely due to disruption of an RNA-binding function of Lark as similar phenotypes were observed in flies carrying specific RNA-binding domain mutations. We propose that Lark functions during oogenesis as an RNA-binding protein, regulating mRNAs required for nurse cell transport or apoptosis.

摘要

消除果蝇RNA结合蛋白Lark的母体表达会导致雌性不育。在此我们表明,这是由于卵子发生过程中的一种需求。来自lark(1)生殖系克隆(GLC)的发育中卵母细胞通常比正常的小,这是由于滋养细胞细胞质“倾倒”缺陷所致。来自lark(1) GLC的晚期卵室含有低水平的皮质和环管相关肌动蛋白,并且完全缺乏滋养细胞细胞质F-肌动蛋白束,这表明“倾倒”表型是由于肌动蛋白细胞骨架缺陷所致。环管成分Hu-li tai shao(Hts)蛋白的定位在这些突变体中也受到破坏。除了无倾倒表型外,我们还观察到晚期卵室的积累,这种表型与突变体中观察到的产卵减少相关。我们推测这种表型是由于卵子的细胞骨架完整性缺陷所致,因为保留和产卵的卵很脆弱且常常瘪掉。这些突变体表型可能是由于Lark的RNA结合功能受到破坏,因为在携带特定RNA结合结构域突变的果蝇中观察到了类似的表型。我们提出Lark在卵子发生过程中作为一种RNA结合蛋白发挥作用,调节滋养细胞运输或凋亡所需的mRNA。

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