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首页> 外文期刊>Development >Analysis of PINCH function in Drosophila demonstrates its requirement in integrin-dependent cellular processes.
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Analysis of PINCH function in Drosophila demonstrates its requirement in integrin-dependent cellular processes.

机译:果蝇中PINCH功能的分析证明了其在整合素依赖性细胞过程中的需求。

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摘要

Integrins play a crucial role in cell motility, cell proliferation and cell survival. The evolutionarily conserved LIM protein PINCH is postulated to act as part of an integrin-dependent signaling complex. In order to evaluate the role of PINCH in integrin-mediated cellular events, we have tested directly the in vivo function of PINCH in Drosophila melanogaster. We demonstrate that the steamer duck (stck) alleles that were first identified in a screen for potential integrin effectors represent mutations in Drosophila pinch. stck mutants die during embryogenesis, revealing a key role for PINCH in development. Muscle cells within embryos that have compromised PINCH function display disturbed actin organization and cell-substratum adhesion. Mutation of stck also causes failure of integrin-dependent epithelial cell adhesion in the wing. Consistent with the idea that PINCH could contribute to integrin function, PINCH protein colocalizes with betaPS integrin at sites of actin filament anchorage in both muscle and wing epithelial cells. Furthermore, we show that integrins are required for proper localization of PINCH at the myotendinous junction. The integrin-linked kinase, ILK, is also essential for integrin function. We demonstrate that Drosophila PINCH and ILK are complexed in vivo and are coincident at the integrin-rich muscle-attachment sites in embryonic muscle. Interestingly, ILK localizes appropriately in stck mutant embryos, therefore the phenotypes exhibited by the stck mutants are not attributable to mislocalization of ILK. Our results provide direct genetic evidence that PINCH is essential for Drosophila development and is required for integrin-dependent cell adhesion.
机译:整联蛋白在细胞运动,细胞增殖和细胞存活中起关键作用。假设进化上保守的LIM蛋白PINCH充当整合素依赖性信号复合物的一部分。为了评估PINCH在整联蛋白介导的细胞事件中的作用,我们直接测试了PINCH在果蝇中的体内功能。我们证明,在潜在的整联蛋白效应物的筛选中首次发现的duck鸭(stck)等位基因代表果蝇捏中的突变。 stck突变体在胚胎发生过程中死亡,揭示了PINCH在发育中的关键作用。 PINCH功能受损的胚胎中的肌肉细胞显示出肌动蛋白组织和细胞基质粘附受到干扰。 stck的突变还导致机翼中整合素依赖性上皮细胞粘附的失败。与PINCH可能有助于整合素功能的想法一致,PINCH蛋白与betaPS整合素共定位于肌动蛋白丝固定在肌肉和翼上皮细胞中。此外,我们表明整联蛋白是正确定位PINCH在肌腱交界处所必需的。整合素连接的激酶ILK对于整合素功能也是必不可少的。我们证明果蝇PINCH和ILK在体内是复杂的,并且在胚胎肌肉中富含整联蛋白的肌肉附着位点处重合。有趣的是,ILK适当地定位在stck突变体的胚胎中,因此stck突变体表现出的表型不归因于ILK的定位错误。我们的结果提供了直接的遗传学证据,表明PINCH对果蝇的发育至关重要,并且是整联蛋白依赖性细胞粘附所必需的。

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