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Genetic and Proteomic Evidence for Roles of Drosophila SUMO in Cell Cycle Control Ras Signaling and Early Pattern Formation

机译:果蝇SUMO在细胞周期控制Ras信号传导和早期模式形成中的作用的遗传和蛋白质组学证据。

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摘要

SUMO is a protein modifier that is vital for multicellular development. Here we present the first system-wide analysis, combining multiple approaches, to correlate the sumoylated proteome (SUMO-ome) in a multicellular organism with the developmental roles of SUMO. Using mass-spectrometry-based protein identification, we found over 140 largely novel SUMO conjugates in the early Drosophila embryo. Enriched functional groups include proteins involved in Ras signaling, cell cycle, and pattern formation. In support of the functional significance of these findings, sumo germline clone embryos exhibited phenotypes indicative of defects in these same three processes. Our cell culture and immunolocalization studies further substantiate roles for SUMO in Ras signaling and cell cycle regulation. For example, we found that SUMO is required for efficient Ras-mediated MAP kinase activation upstream or at the level of Ras activation. We further found that SUMO is dynamically localized during mitosis to the condensed chromosomes, and later also to the midbody. Polo kinase, a SUMO substrate found in our screen, partially colocalizes with SUMO at both sites. These studies show that SUMO coordinates multiple regulatory processes during oogenesis and early embryogenesis. In addition, our database of sumoylated proteins provides a valuable resource for those studying the roles of SUMO in development.
机译:SUMO是一种蛋白质修饰剂,对多细胞发育至关重要。在这里,我们介绍了第一个系统范围的分析,结合了多种方法,以将多细胞生物体中的磺酰化蛋白质组(SUMO-ome)与SUMO的发展作用相关联。使用基于质谱的蛋白质鉴定,我们在果蝇早期胚胎中发现了140多种新颖的SUMO偶联物。丰富的官能团包括参与Ras信号传导,细胞周期和模式形成的蛋白质。为了支持这些发现的功能重要性,相扑种系克隆胚胎表现出表型,表明在这三个过程中都存在缺陷。我们的细胞培养和免疫定位研究进一步证实了SUMO在Ras信号传导和细胞周期调控中的作用。例如,我们发现SUMO是有效的Ras介导的MAP激酶激活的上游或在Ras激活的水平所必需的。我们进一步发现,SUMO在有丝分裂过程中动态地定位在浓缩染色体上,后来也定位在中体上。 Polo激酶是我们筛查中的SUMO底物,在两个位置上都与SUMO部分共定位。这些研究表明,SUMO协调卵子发生和早期胚胎发生过程中的多个调控过程。此外,我们的磺酰化蛋白质数据库为那些研究SUMO在发育中的作用的人提供了宝贵的资源。

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