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Molecular Insight into the Regulation of Vimentin by Cysteine Modifications and Zinc Binding

机译:通过半胱氨酸修饰和锌结合对Vimentin调节的分子洞察

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摘要

The intermediate filament protein vimentin is involved in essential cellular processes, including cell division and stress responses, as well as in the pathophysiology of cancer, pathogen infection, and autoimmunity. The vimentin network undergoes marked reorganizations in response to oxidative stress, in which modifications of vimentin single cysteine residue, Cys328, play an important role, and is modulated by zinc availability. However, the molecular basis for this regulation is not fully understood. Here, we show that Cys328 displays a low pKa, supporting its reactivity, and is readily alkylated and oxidized in vitro. Moreover, combined oxidation and crosslinking assays and molecular dynamics simulations support that zinc ions interact with Cys328 in its thiolate form, whereas Glu329 and Asp331 stabilize zinc coordination. Vimentin oxidation can induce disulfide crosslinking, implying the close proximity of Cys328 from neighboring dimers in certain vimentin conformations, supported by our computational models. Notably, micromolar zinc concentrations prevent Cys328 alkylation, lipoxidation, and disulfide formation. Moreover, zinc selectively protects vimentin from crosslinking using short-spacer cysteine-reactive but not amine-reactive agents. These effects are not mimicked by magnesium, consistent with a lower number of magnesium ions hosted at the cysteine region, according to molecular dynamics simulations. Importantly, the region surrounding Cys328 is involved in interaction with several drugs targeting vimentin and is conserved in type III intermediate filaments, which include glial fibrillary acidic protein and desmin. Altogether, our results identify this region as a hot spot for zinc binding, which modulates Cys328 reactivity. Moreover, they provide a molecular standpoint for vimentin regulation through the interplay between cysteine modifications and zinc availability.
机译:中间丝蛋白Vimentin参与基本细胞过程,包括细胞分裂和应力反应,以及癌症,病原体感染和自身免疫的病理生理学。 Vimentin网络响应于氧化胁迫进行标记的重组,在这种氧化剂单半胱氨酸残基的修饰中,Cys328起起重要作用,并通过锌可用性调节。然而,该调节的分子基础尚未完全理解。在这里,我们表明Cys328显示出低PKA,支持其反应性,并且容易烷基化和体外氧化。此外,组合氧化和交联测定和分子动力学模拟支持,锌离子以其硫醇酸盐形式与Cys328相互作用,而Glu329和Asp331稳定锌配位。 Vimentin氧化可以诱导二硫化物交联,暗示Cys328在某些Vimentin构象中的相邻二聚体的紧密接近,由我们的计算模型支持。值得注意的是,微摩洛尔锌浓度可预防Cys328烷基化,脂氧化和二硫化物形成。此外,锌选择性地保护VimentIn使用短间隔半胱氨酸 - 反应性而非胺反应剂的交联。根据分子动力学模拟,这些效果不受镁模拟的镁,与在半胱氨酸区域中托管的少量镁离子一致。重要的是,Cys328周围的区域涉及与靶向Vimentin的几种药物的相互作用,并在III型中间细丝中保守,包括胶质纤维酸性蛋白和DESmin。完全,我们的结果将该地区识别为锌结合的热点,调制Cys328反应性。此外,它们通过在半胱氨酸修饰和锌可用性之间的相互作用中提供了一种分子观点。

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