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A Balance of Capping Protein and Profilin Functions Is Required to Regulate Actin Polymerization in Drosophila Bristle

机译:要求调节果蝇鬃中肌动蛋白聚合的平衡蛋白和脯氨酸蛋白功能的平衡。

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摘要

Profilin is a well-characterized protein known to be important for regulating actin filament assembly. Relatively few studies have addressed how profilin interacts with other actin-binding proteins in vivo to regulate assembly of complex actin structures. To investigate the function of profilin in the context of a differentiating cell, we have studied an instructive genetic interaction between mutations in profilin (chickadee) and capping protein (cpb). Capping protein is the principal protein in cells that caps actin filament barbed ends. When its function is reduced in the Drosophila bristle, F-actin levels increase and the actin cytoskeleton becomes disorganized, causing abnormal bristle morphology. chickadee mutations suppress the abnormal bristle phenotype and associated abnormalities of the actin cytoskeleton seen in cpb mutants. Furthermore, overexpression of profilin in the bristle mimics many features of the cpb loss-of-function phenotype. The interaction between cpb and chickadee suggests that profilin promotes actin assembly in the bristle and that a balance between capping protein and profilin activities is important for the proper regulation of F-actin levels. Furthermore, this balance of activities affects the association of actin structures with the membrane, suggesting a link between actin filament dynamics and localization of actin structures within the cell.
机译:Profilin是一种众所周知的蛋白质,已知对调节肌动蛋白丝组装非常重要。相对地,很少有研究讨论过脯蛋白在体内如何与其他肌动蛋白结合蛋白相互作用以调节复杂肌动蛋白结构的组装。为了研究在分化细胞的情况下profilin的功能,我们研究了profilin(山雀)和加帽蛋白(cpb)中的突变之间的指导性遗传相互作用。封端蛋白是细胞中覆盖肌动蛋白丝倒刺末端的主要蛋白。当在果蝇刷毛中其功能降低时,F-肌动蛋白水平升高,肌动蛋白的细胞骨架变得混乱,从而导致异常的刷毛形态。山雀突变可抑制在cpb突变体中发现的异常刷毛表型和相关的肌动蛋白细胞骨架异常。此外,猪鬃中profilin的过表达模拟了cpb功能丧失表型的许多特征。 cpb和山雀之间的相互作用表明,profilin促进了猪鬃中的肌动蛋白组装,而封端蛋白和profilin活性之间的平衡对于正确调节F-actin水平很重要。此外,活性的这种平衡影响肌动蛋白结构与膜的缔合,表明肌动蛋白丝动力学与肌动蛋白结构在细胞内的定位之间存在联系。

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