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首页> 外文期刊>Nature Communications >Vimentin filament organization and stress sensing depend on its single cysteine residue and zinc binding
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Vimentin filament organization and stress sensing depend on its single cysteine residue and zinc binding

机译:波形蛋白细丝的组织和压力感应取决于其单个半胱氨酸残基和锌结合

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The vimentin filament network plays a key role in cell architecture and signalling, as well as in epithelial–mesenchymal transition. Vimentin C328 is targeted by various oxidative modifications, but its role in vimentin organization is not known. Here we show that C328 is essential for vimentin network reorganization in response to oxidants and electrophiles, and is required for optimal vimentin performance in network expansion, lysosomal distribution and aggresome formation. C328 may fulfil these roles through interaction with zinc. In vitro , micromolar zinc protects vimentin from iodoacetamide modification and elicits vimentin polymerization into optically detectable structures; in cells, zinc closely associates with vimentin and its depletion causes reversible filament disassembly. Finally, zinc transport-deficient human fibroblasts show increased vimentin solubility and susceptibility to disruption, which are restored by zinc supplementation. These results unveil a critical role of C328 in vimentin organization and open new perspectives for the regulation of intermediate filaments by zinc.
机译:波形蛋白丝网络在细胞结构和信号传导以及上皮-间质转化中起着关键作用。波形蛋白C328被各种氧化修饰所靶向,但在波形蛋白组织中的作用尚不清楚。在这里,我们显示C328对于波形蛋白网络重组是必需的,以响应氧化剂和亲电试剂,并且对于波形蛋白在网络扩展,溶酶体分布和聚集体形成中的最佳性能是必需的。 C328可通过与锌的相互作用来完成这些作用。在体外,微摩尔锌可保护波形蛋白免受碘乙酰胺的修饰,并引发波形蛋白聚合成光学可检测的结构。在细胞中,锌与波形蛋白紧密结合,其消耗会导致可逆的细丝分解。最后,缺乏锌转运的人成纤维细胞显示波形蛋白的溶解度增加和对破坏的敏感性增加,这可以通过补充锌来恢复。这些结果揭示了C328在波形蛋白组织中的关键作用,并为锌对中间丝的调控开辟了新的前景。

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