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果蝇的Pelle蛋白使双胸蛋白磷酸化,并影响其在发育中的卵母细胞中的亚细胞分布。

Drosophila Pelle phosphorylates Dichaete protein and influences its subcellular distribution in developing oocytes.

作者信息

Mutsuddi Mousumi, Mukherjee Ashim, Shen Baohe, Manley James L, Nambu John R

机构信息

Department of Molecular and Human Genetics, Banaras Hindu University, Varanasi, India.

出版信息

Int J Dev Biol. 2010;54(8-9):1309-15. doi: 10.1387/ijdb.092991mm.

Abstract

The Drosophila Dichaete gene encodes a member of the Sox family of high mobility group (HMG) domain proteins that have crucial gene regulatory functions in diverse developmental processes. The subcellular localization and transcriptional regulatory activities of Sox proteins can be regulated by several post-translational modifications. To identify genes that functionally interact with Dichaete, we undertook a genetic modifier screen based on a Dichaete gain-of-function phenotype in the adult eye. Mutations in several genes, including decapentaplegic, engrailed and pelle, behaved as dominant modifiers of this eye phenotype. Further analysis of pelle mutants revealed that loss of pelle function results in alterations in the distinctive cytoplasmic distribution of Dichaete protein within the developing oocyte, as well as defects in the elaboration of individual egg chambers. The death domain-containing region of the Pelle protein kinase was found to associate with both Dichaete and mouse Sox2 proteins, and Pelle can phosphorylate Dichaete protein in vitro. Overall, these findings reveal that maternal functions of pelle are essential for proper localization of Dichaete protein in the oocyte and normal egg chamber formation. Dichaete appears to be a novel phosphorylation substrate for Pelle and may function in a Pelle-dependent signaling pathway during oogenesis.

摘要

果蝇双胸基因编码一种高迁移率族(HMG)结构域蛋白的Sox家族成员,这些蛋白在多种发育过程中具有关键的基因调控功能。Sox蛋白的亚细胞定位和转录调控活性可通过几种翻译后修饰来调节。为了鉴定与双胸基因功能相互作用的基因,我们基于双胸基因在成年果蝇眼睛中的功能获得性表型进行了遗传修饰筛选。包括骨形态发生蛋白、 engrailed和pelle在内的几个基因的突变表现为这种眼睛表型的显性修饰因子。对pelle突变体的进一步分析表明,pelle功能的丧失导致双胸蛋白在发育中的卵母细胞内独特的细胞质分布发生改变,以及单个卵室发育出现缺陷。发现Pelle蛋白激酶的死亡结构域区域与双胸蛋白和小鼠Sox2蛋白都有关联,并且Pelle在体外可以磷酸化双胸蛋白。总体而言,这些发现表明pelle的母体功能对于双胸蛋白在卵母细胞中的正确定位和正常卵室形成至关重要。双胸蛋白似乎是Pelle的一种新型磷酸化底物,并且可能在卵子发生过程中参与Pelle依赖的信号通路。

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