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Redox Regulation of Cysteine-Dependent Enzymes in Neurodegeneration

机译:半胱氨酸依赖酶在神经变性中的氧化还原调节。

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摘要

Evidence of increased oxidative stress has been found in various neurodegenerative diseases and conditions. While it is unclear whether oxidative stress is a cause or effect, protein, lipid, and DNA have all been found to be susceptible to oxidant-induced modifications that alter their function. Results of clinical trials based on the oxidative-stress theory have been mixed, though data continues to indicate that prevention of high levels of oxidative stress is beneficial for health and increases longevity. Due to the highly reactive nature of the sulfhydryl group, the focus of this paper is on the impact of oxidative stress on cysteine-dependent enzymes and how oxidative stress may contribute to neurological dysfunction through this selected group of proteins.
机译:在各种神经退行性疾病和病症中已经发现氧化应激增加的证据。虽然尚不清楚氧化应激是起因还是结果,但已发现蛋白质,脂质和DNA均易受氧化剂诱导的修饰而改变其功能。尽管有数据继续表明,预防高水平的氧化应激有益于健康并延长寿命,但基于氧化应激理论的临床试验结果好坏参半。由于巯基的高反应性,本文的重点是氧化应激对半胱氨酸依赖性酶的影响以及氧化应激如何通过这组选定的蛋白质导致神经功能障碍。

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