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Effect of Single Amino Acid Substitution on Oxidative Modifications of the Parkinsons Disease-Related Protein DJ-1

机译:单个氨基酸取代对帕金森氏病相关蛋白DJ-1氧化修饰的影响

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摘要

Mutations in the gene encoding DJ-1 have been identified in patients with familial Parkinson's disease (PD) and are thought to inactivate a neuroprotective function. Oxidation of the sulfhydryl group to a sulfinic acid on cysteine residue C106 of DJ-1 yields the “2O ” form, a variant of the protein with enhanced neuroprotective function. We hypothesized that some familial mutations disrupt DJ-1 activity by interfering with conversion of the protein to the 2O form. To address this hypothesis, we developed a novel quantitative mass spectrometry approach to measure relative changes in oxidation at specific sites in mutant DJ-1 as compared with the wild-type protein. Treatment of recombinant wild-type DJ-1 with a 10-fold molar excess of H2O2 resulted in a robust oxidation of C106 to the sulfinic acid, whereas this modification was not detected in a sample of the familial PD mutant M26I exposed to identical conditions. Methionine oxidized isoforms of wild-type DJ-1 were depleted, presumably as a result of misfolding and aggregation, under conditions that normally promote conversion of the protein to the 2O form. These data suggest that the M26I familial substitution and methionine oxidation characteristic of sporadic PD may disrupt DJ-1 function by disfavoring a site-specific modification required for optimal neuroprotective activity. Our findings indicate that a single amino acid substitution can markedly alter a protein's ability to undergo oxidative modification, and they imply that stimulating the conversion of DJ-1 to the 2O form may be therapeutically beneficial in familial or sporadic PD.
机译:在患有家族性帕金森氏病(PD)的患者中已经发现了编码DJ-1的基因突变,并被认为可以使神经保护功能失活。在DJ-1的半胱氨酸残基C106上将巯基氧化为亚磺酸可产生“ 2O”形式,这是一种具有增强的神经保护功能的蛋白质变体。我们假设某些家族突变通过干扰蛋白质向2O形式的转化来破坏DJ-1的活性。为了解决这个假设,我们开发了一种新颖的定量质谱方法来测量突变DJ-1中特定位点与野生型蛋白相比氧化的相对变化。用10倍摩尔过量的H2O2处理重组野生型DJ-1,会导致C106强烈氧化为亚磺酸,而暴露于相同条件的PD突变型M26I样品中未检测到这种修饰。在正常促进蛋白质转化为2O形式的条件下,野生型DJ-1的蛋氨酸氧化同工型被消耗掉了,大概是由于错误折叠和聚集的结果。这些数据表明,散发性PD的M26I家族取代和蛋氨酸氧化特性可能会通过破坏最佳神经保护活性所需的位点特异性修饰而破坏DJ-1功能。我们的发现表明,单个氨基酸取代可以显着改变蛋白质的氧化修饰能力,并且它们暗示刺激DJ-1转化为2O形式在家族性或散发性PD中可能对治疗有益。

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