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基于硫醇的调节开关。

Thiol-based regulatory switches.

作者信息

Paget Mark S B, Buttner Mark J

机构信息

Department of Biochemistry, School of Life Sciences, University of Sussex, Brighton BN1 9QG, United Kingdom.

出版信息

Annu Rev Genet. 2003;37:91-121. doi: 10.1146/annurev.genet.37.110801.142538.

Abstract

Thiol-based regulatory switches play central roles in cellular responses to oxidative stress, nitrosative stress, and changes in the overall thiol-disulfide redox balance. Protein sulfhydryls offer a great deal of flexibility in the different types of modification they can undergo and the range of chemical signals they can perceive. For example, recent work on OhrR and OxyR has clearly established that disulfide bonds are not the only cysteine oxidation products that are likely to be relevant to redox sensing in vivo. Furthermore, different stresses can result in distinct modifications to the same protein; in OxyR it seems that distinct modifications can occur at the same cysteine, and in Yap1 a partner protein ensures that the disulfide bond induced by peroxide stress is different from the disulfide bond induced by other stresses. These kinds of discoveries have also led to the intriguing suggestion that different modifications to the same protein can create multiple activation states and thus deliver discrete regulatory outcomes. In this review, we highlight these issues, focusing on seven well-characterized microbial proteins controlled by thiol-based switches, each of which exhibits unique regulatory features.

摘要

基于硫醇的调节开关在细胞对氧化应激、亚硝化应激以及整体硫醇-二硫键氧化还原平衡变化的反应中起着核心作用。蛋白质巯基在它们能够经历的不同类型修饰以及能够感知的化学信号范围方面提供了很大的灵活性。例如,最近关于OhrR和OxyR的研究清楚地表明,二硫键并不是体内可能与氧化还原传感相关的唯一半胱氨酸氧化产物。此外,不同的应激可以导致对同一蛋白质的不同修饰;在OxyR中,似乎在同一半胱氨酸上可以发生不同的修饰,而在Yap1中,一种伴侣蛋白确保过氧化物应激诱导的二硫键与其他应激诱导的二硫键不同。这类发现还引发了一个有趣的观点,即对同一蛋白质的不同修饰可以产生多种激活状态,从而带来离散的调节结果。在这篇综述中,我们重点介绍这些问题,聚焦于七种由基于硫醇的开关控制的、具有充分特征的微生物蛋白质,其中每一种都表现出独特的调节特性。

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