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活性氧对基因表达的调控

Regulation of gene expression by reactive oxygen.

作者信息

Dalton T P, Shertzer H G, Puga A

机构信息

Center for Environmental Genetics, University of Cincinnati Medical Center, Ohio 45267-0056, USA.

出版信息

Annu Rev Pharmacol Toxicol. 1999;39:67-101. doi: 10.1146/annurev.pharmtox.39.1.67.

Abstract

Reactive oxygen intermediates are produced in all aerobic organisms during respiration and exist in the cell in a balance with biochemical antioxidants. Excess reactive oxygen resulting from exposure to environmental oxidants, toxicants, and heavy metals perturbs cellular redox balance and disrupts normal biological functions. The resulting imbalance may be detrimental to the organism and contribute to the pathogenesis of disease and aging. To counteract the oxidant effects and to restore a state of redox balance, cells must reset critical homeostatic parameters. Changes associated with oxidative damage and with restoration of cellular homeostasis often lead to activation or silencing of genes encoding regulatory transcription factors, antioxidant defense enzymes, and structural proteins. In this review, we examine the sources and generation of free radicals and oxidative stress in biological systems and the mechanisms used by reactive oxygen to modulate signal transduction cascades and redirect gene expression.

摘要

在呼吸过程中,所有需氧生物都会产生活性氧中间体,它们在细胞内与生化抗氧化剂保持平衡。暴露于环境氧化剂、毒物和重金属会导致活性氧过量,从而扰乱细胞氧化还原平衡,破坏正常生物功能。由此产生的失衡可能对生物体有害,并导致疾病和衰老的发病机制。为了抵消氧化作用并恢复氧化还原平衡状态,细胞必须重置关键的稳态参数。与氧化损伤和细胞稳态恢复相关的变化通常会导致编码调节转录因子、抗氧化防御酶和结构蛋白的基因激活或沉默。在这篇综述中,我们研究了生物系统中自由基的来源和产生以及氧化应激,以及活性氧用于调节信号转导级联反应和重新定向基因表达的机制。

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