首页> 外文OA文献 >Analysis of the Cell Adhesion Molecule Sticks-and-Stones Reveals Multiple Redundant Functional Domains, Protein-Interaction Motifs and Phosphorylated Tyrosines That Direct Myoblast Fusion in Drosophila melanogaster
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Analysis of the Cell Adhesion Molecule Sticks-and-Stones Reveals Multiple Redundant Functional Domains, Protein-Interaction Motifs and Phosphorylated Tyrosines That Direct Myoblast Fusion in Drosophila melanogaster

机译:细胞粘附分子棒和石的分析揭示了多个冗余的功能域,蛋白质相互作用母题和磷酸化的酪氨酸,直接在果蝇中的成肌细胞融合。

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摘要

The larval body wall muscles of Drosophila melanogaster arise by fusion of founder myoblasts (FMs) and fusion-competent myoblasts (FCMs). Sticks-and-Stones (SNS) is expressed on the surface of all FCMs and mediates adhesion with FMs and developing syncytia. Intracellular components essential for myoblast fusion are then recruited to these adhesive contacts. In the studies herein, a functional analysis of the SNS cytodomain using the GAL4/UAS system identified sequences that direct myoblast fusion, presumably through recruitment of these intracellular components. An extensive series of deletion and site-directed mutations were evaluated for their ability to rescue the myoblast fusion defects of sns mutant embryos. Deletion studies revealed redundant functional domains within SNS. Surprisingly, highly conserved consensus sites for binding post-synaptic density-95/discs large/zonula occludens-1-domain-containing (PDZ) proteins and serines with a high probability of phosphorylation play no significant role in myoblast fusion. Biochemical studies establish that the SNS cytodomain is phosphorylated at multiple tyrosines and their site-directed mutagenesis compromises the ability of the corresponding transgenes to rescue myoblast fusion. Similar mutagenesis revealed a requirement for conserved proline-rich regions. This complexity and redundancy of multiple critical sequences within the SNS cytodomain suggest that it functions through a complex array of interactions that likely includes both phosphotyrosine-binding and SH3-domain-containing proteins.
机译:果蝇的幼虫体壁肌肉是由创始人成肌细胞(FMs)和具有融合能力的成肌细胞(FCM)融合而成的。棒和石(SNS)在所有FCM的表面表达,并介导与FM的粘附和发展合胞体。然后将成肌细胞融合所必需的细胞内组分募集到这些粘附性接触点。在本文的研究中,使用GAL4 / UAS系统对SNS细胞结构域进行功能分析,确定了指导成肌细胞融合的序列,大概是通过募集这些细胞内组分。评估了一系列广泛的缺失和定点突变的能力,以挽救它们修复sns突变胚胎的成肌细胞融合缺陷的能力。删除研究揭示了SNS中的冗余功能域。出人意料的是,高度保守的共有位点,用于结合突触后的密度为95 / diss的大/带小带闭塞的1域(PDZ)蛋白质和丝氨酸丝氨酸磷酸化的可能性很高,在成肌细胞融合中没有重要作用。生化研究表明,SNS细胞结构域在多个酪氨酸处被磷酸化,并且它们的定点诱变损害了相应转基因抢救成肌细胞融合的能力。相似的诱变表明需要富含脯氨酸的保守区域。 SNS细胞结构域内多个关键序列的这种复杂性和冗余性表明,它通过复杂的相互作用阵列起作用,可能包括磷酸酪氨酸结合蛋白和含SH3结构域蛋白。

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