首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Use of cysteine-reactive cross-linkers to probe conformational flexibility of human DJ-1 demonstrates that Glu18 mutations are dimers
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Use of cysteine-reactive cross-linkers to probe conformational flexibility of human DJ-1 demonstrates that Glu18 mutations are dimers

机译:使用半胱氨酸反应性交联剂探查人类DJ-1的构象灵活性表明Glu18突变是二聚体

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摘要

The oxidation of a key cysteine residue (Cys106) in the parkinsonism-associated protein DJ-1 regulates its ability to protect against oxidative stress and mitochondrial damage. Cys106 interacts with a neighboring protonated Glu18 residue, stabilizing the Cys106-SO2- (sulfinic acid) form of DJ-1. To study this important post-translational modification, we previously designed several Glu18 mutations (E18N, E18D, E18Q) that alter the oxidative propensity of Cys106. However, recent results suggest these Glu18 mutations cause loss of DJ-1 dimerization, which would severely compromise the protein's function. The purpose of this study was to conclusively determine the oligomerization state of these mutants using X-ray crystallography, NMR spectroscopy, thermal stability analysis, circular dichroism spectroscopy, sedimentation equilibrium ultracentrifugation, and cross-linking. We found that all of the Glu18 DJ-1 mutants were dimeric. Thiol cross-linking indicates that these mutant dimers are more flexible than the wild-type protein and can form multiple cross-linked dimeric species due to the transient exposure of cysteine residues that are inaccessible in the wild-type protein. The enhanced flexibility of Glu18 DJ-1 mutants provides a parsimonious explanation for their lower observed cross-linking efficiency in cells. In addition, thiol cross-linkers may have an underappreciated value as qualitative probes of protein conformational flexibility.
机译:帕金森病相关蛋白DJ-1中关键半胱氨酸残基(Cys106)的氧化调节了其抵抗氧化应激和线粒体损害的能力。 Cys106与相邻的质子化Glu18残基相互作用,稳定了DJ-1的Cys106-SO2-(亚磺酸)形式。为了研究这一重要的翻译后修饰,我们先前设计了几个Glu18突变(E18N,E18D,E18Q),这些突变可改变Cys106的氧化倾向。但是,最近的结果表明,这些Glu18突变会导致DJ-1二聚化作用的丧失,这将严重损害蛋白质的功能。这项研究的目的是使用X射线晶体学,NMR光谱,热稳定性分析,圆二色光谱,沉降平衡超速离心和交联来确定这些突变体的低聚状态。我们发现所有的Glu18 DJ-1突变体都是二聚体。硫醇交联表明这些突变体二聚体比野生型蛋白更具柔性,并且由于瞬时暴露于野生型蛋白中的半胱氨酸残基而可形成多个交联的二聚体物种。 Glu18 DJ-1突变体的增强的灵活性为其在细胞中观察到的较低的交联效率提供了简化的解释。另外,作为蛋白质构象柔韧性的定性探针,硫醇交联剂的价值可能不足。

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