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首页> 外文期刊>Antioxidants and redox signalling >Global methods to monitor the thiol-disulfide state of proteins in vivo.
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Global methods to monitor the thiol-disulfide state of proteins in vivo.

机译:监测体内蛋白质巯基-二硫键状态的全局方法。

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Cysteines play an important role in protein biochemistry. The unique chemical property and high reactivity of the free thiol group makes reduced cysteine a versatile component of catalytic centers and metal binding sites in many cytosolic proteins and oxidized cystine a stabilizing component in many secreted proteins. Moreover, cysteines readily react with reactive oxygen and nitrogen species to form reversible oxidative thiol modifications. As a result, these reversible thiol modifications have found a use as regulatory nano-switches in an increasing number of redox sensitive proteins. These redox-regulated proteins are able to adjust their activity quickly in response to changes in their redox environment. Over the past few years, a number of techniques have been developed that give insight into the global thiol-disulfide state of proteins in the cell. They have been successfully used to find substrates of thiol-disulfide oxidoreductases and to discover novel redoxregulated proteins. This review willprovide an overview of the current techniques, focus on approaches to quantitatively describe the extent of thiol modification in vivo, and summarize their applications.
机译:半胱氨酸在蛋白质生物化学中起重要作用。游离硫醇基团的独特化学性质和高反应活性使还原的半胱氨酸成为许多胞质蛋白中催化中心和金属结合位点的通用成分,而氧化的胱氨酸成为许多分泌蛋白中的稳定成分。此外,半胱氨酸容易与活性氧和氮物种反应以形成可逆的氧化硫醇修饰。结果,已经发现这些可逆的硫醇修饰在越来越多的氧化还原敏感蛋白中用作调节性纳米开关。这些氧化还原调节的蛋白能够响应其氧化还原环境的变化而迅速调节其活性。在过去的几年中,已开发出许多技术,可以洞悉细胞中蛋白质的整体硫醇二硫状态。它们已成功用于发现巯基-二硫键氧化还原酶的底物并发现新型的氧化还原调节蛋白。这篇综述将提供当前技术的概述,着重于定量描述体内硫醇修饰程度的方法,并总结其应用。

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