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Cysteine-Based Redox Sensing and Its Role in Signaling by Cyclic Nucleotide Dependent Kinases in the Cardiovascular System

机译:基于半胱氨酸的氧化还原感测及其在心血管系统中循环核苷酸依赖性激酶信号传导的作用

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摘要

Oxidant molecules are produced in biological systems and historically have been considered causal mediators of damage and disease. While oxidants may contribute to the pathogenesis of disease, evidence continues to emerge that shows these species also play important regulatory roles in health. A major mechanism of oxidant sensing and signaling involves their reaction with reactive cysteine thiols within proteins, inducing-oxidative posttranslational modifications that can couple to altered function to enable homeostatic regulation. Protein kinase A and protein kinase. G are regulated by oxidants in this way, and this review focuses on our molecular-level understanding of these events and their role in regulating cardiovascular physiology during health and disease.
机译:氧化剂分子在生物系统中产生,历史上被认为是损伤和疾病的因果介质。 虽然氧化剂可能有助于疾病的发病机制,但证据继续出现,显示这些物种也在健康中发挥着重要的监管作用。 氧化剂感测和信号传导的主要机制包括与蛋白质内的反应性半胱氨酸硫醇反应,诱导氧化后期改性,这可能耦合到改变功能以实现稳态调节。 蛋白激酶A和蛋白激酶。 G以这种方式受到氧化剂的调节,这篇综述侧重于我们对这些事件的分子层面理解及其在健康和疾病中调节心血管生理学的作用。

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