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首页> 外文期刊>Current opinion in clinical nutrition and metabolic care >Redox regulation in anabolic and catabolic processes.
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Redox regulation in anabolic and catabolic processes.

机译:合成代谢和分解代谢过程中的氧化还原调节。

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PURPOSE OF REVIEW: Muscle wasting as it typically occurs in old age and in certain diseases is poorly understood. This review summarizes recent findings suggesting a role for redox-sensitive signaling cascades in catabolic processes. RECENT FINDINGS: The redox-sensitive transcription factors nuclear factor kappaB and activator protein 1 facilitate ubiquitin-proteasome-dependent proteolysis. Nuclear factor kappaB also plays a role in induced expression of tumor necrosis factor alpha and other inflammatory cytokines that have been implicated in catabolic processes. The activities of nuclear factor kappaB and activator protein 1 are stimulated not only by hydrogen peroxide, which is produced in tissues by regulated enzymatic processes, but also by an oxidative shift in thiol-disulfide redox status. The oxidative shift that is typically seen in old age and certain catabolic conditions may thus play a causative role in catabolic processes. Another prominent case in point is insulin-independent 'basal' insulin receptor kinase activity, which is strongly enhanced by hydrogen peroxide or by an oxidative shift in redox status. The insulin receptor signaling cascade induces anabolic and anticatabolic effects, but its abnormal upregulation under starving conditions potentially compromises glucose and amino acid homeostasis. In genetic animal studies, impairment of insulin receptor signaling was shown to increase life span. SUMMARY: These findings may provide a rationale for cysteine supplementation in catabolic conditions.
机译:审查目的:肌肉消瘦,因为它通常发生在老年和某些疾病中,人们对此知之甚少。这篇综述总结了最近的发现,暗示了氧化还原敏感信号级联在分解代谢过程中的作用。最近的发现:氧化还原敏感的转录因子核因子κB和激活蛋白1促进泛素-蛋白酶体依赖性蛋白水解。核因子κB还在肿瘤坏死因子α和其他与分解代谢过程有关的炎性细胞因子的诱导表达中起作用。核因子κB和激活蛋白1的活性不仅受到过氧化氢的刺激,而过氧化氢是通过调节的酶促过程在组织中产生的,而且还可以通过硫醇-二硫化物的氧化还原状态的氧化转变来刺激。因此,在老年人和某些分解代谢条件下通常会发生氧化变化,因此在分解代谢过程中可能起着致病作用。另一个突出的例子是胰岛素非依赖性的“基础”胰岛素受体激酶活性,该活性可通过过氧化氢或氧化还原状态的氧化转移而大大增强。胰岛素受体信号传导级联诱导合成代谢和抗代谢作用,但是在饥饿条件下其异常上调可能损害葡萄糖和氨基酸稳态。在遗传动物研究中,胰岛素受体信号转导的损伤可延长寿命。摘要:这些发现可能为分解代谢条件下补充半胱氨酸提供理论依据。

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