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Gelsolin Plays a Role in the Actin Polymerization Complex of Hair Cell Stereocilia

机译:凝溶胶蛋白在毛细胞胞壁蛋白的肌动蛋白聚合复合物中发挥作用

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摘要

A complex of proteins scaffolded by the PDZ protein, whirlin, reside at the stereocilia tip and are critical for stereocilia development and elongation. We have shown that in outer hair cells (OHCs) whirlin is part of a larger complex involving the MAGUK protein, p55, and protein 4.1R. Whirlin interacts with p55 which is expressed exclusively in outer hair cells (OHC) in both the long stereocilia that make up the stereocilia bundle proper as well as surrounding shorter microvilli that will eventually regress. In erythrocytes, p55 forms a tripartite complex with protein 4.1R and glycophorin C promoting the assembly of actin filaments and the interaction of whirlin with p55 indicates that it plays a similar role in OHC stereocilia. However, the components directly involved in actin filament regulation in stereocilia are unknown. We have investigated additional components of the whirlin interactome by identifying interacting partners to p55. We show that the actin capping and severing protein, gelsolin, is a part of the whirlin complex. Gelsolin is detected in OHC where it localizes to the tips of the shorter rows but not to the longest row of stereocilia and the pattern of localisation at the apical hair cell surface is strikingly similar to p55. Like p55, gelsolin is ablated in the whirler and shaker2 mutants. Moreover, in a gelsolin mutant, stereocilia in the apex of the cochlea become long and straggly indicating defects in the regulation of stereocilia elongation. The identification of gelsolin provides for the first time a link between the whirlin scaffolding protein complex involved in stereocilia elongation and a known actin regulatory molecule.
机译:由PDZ蛋白质支撑的蛋白质复合物whirlin驻留在睫状体的尖端,对睫状体的发育和伸长至关重要。我们已经显示,在外毛细胞(OHC)中,旋转蛋白是涉及MAGUK蛋白,p55和4.1R蛋白的较大复合物的一部分。涡旋蛋白与p55相互作用,而p55仅在构成适当的纤毛束的长形纤毛以及周围的最终会消退的较短微绒毛中的外毛细胞(OHC)中表达。在红细胞中,p55与蛋白4.1R和糖蛋白C形成三重复合物,从而促进肌动蛋白丝的装配,而whirlin与p55的相互作用表明它在OHC立体纤毛中起相似的作用。但是,直接参与纤毛肌动蛋白丝调节的成分尚不清楚。我们通过鉴定p55的相互作用伴侣,研究了whirlin相互作用组的其他组成部分。我们显示肌动蛋白加帽和切断蛋白,凝溶胶蛋白,是旋转蛋白复合物的一部分。在OHC中检测到凝溶胶蛋白,它位于短排的顶端,而不是最长的立体纤毛排,并且顶端毛细胞表面的定位模式与p55极为相似。像p55一样,凝溶胶蛋白在whirler和shaker2突变体中被消融。此外,在凝溶胶蛋白突变体中,耳蜗根尖的立体纤毛变长且散乱,表明在调节立体纤毛伸长方面存在缺陷。凝溶胶蛋白的鉴定首次提供了涉及纤毛纤毛伸长的旋转蛋白骨架蛋白复合物与已知的肌动蛋白调节分子之间的联系。

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