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超氧化物歧化酶基因的调控:在疾病中的意义。

Regulation of superoxide dismutase genes: implications in disease.

机构信息

Graduate Center for Toxicology, University of Kentucky, Lexington, KY 40536, USA.

出版信息

Free Radic Biol Med. 2009 Aug 15;47(4):344-56. doi: 10.1016/j.freeradbiomed.2009.05.018. Epub 2009 May 25.

Abstract

Numerous short-lived and highly reactive oxygen species (ROS) such as superoxide (O2(.-)), hydroxyl radical, and hydrogen peroxide are continuously generated in vivo. Depending upon concentration, location, and intracellular conditions, ROS can cause toxicity or act as signaling molecules. The cellular levels of ROS are controlled by antioxidant enzymes and small-molecule antioxidants. As major antioxidant enzymes, superoxide dismutases (SODs), including copper-zinc superoxide dismutase (Cu/ZnSOD), manganese superoxide dismutase, and extracellular superoxide dismutase, play a crucial role in scavenging O2(.-). This review focuses on the regulation of the sod genes coding for these enzymes, with an emphasis on the human genes. Current knowledge about sod structure and regulation is summarized and depicted as diagrams. Studies to date on genes coding for Cu/ZnSOD (sod1) are mostly focused on alterations in the coding region and their associations with amyotrophic lateral sclerosis. Evaluation of nucleotide sequences reveals that regulatory elements of the sod2 gene reside in both the noncoding and the coding region. Changes associated with sod2 lead to alterations in expression levels as well as protein function. We also discuss the structural basis for the changes in SOD expression associated with pathological conditions and where more work is needed to establish the relationship between SODs and diseases.

摘要

体内会不断产生大量寿命短且反应活性高的氧自由基(ROS),如超氧阴离子(O2(.-))、羟自由基和过氧化氢。根据浓度、位置和细胞内环境的不同,ROS 既可能导致毒性,也可能充当信号分子。ROS 的细胞水平由抗氧化酶和小分子抗氧化剂控制。作为主要的抗氧化酶,超氧化物歧化酶(SODs),包括铜锌超氧化物歧化酶(Cu/ZnSOD)、锰超氧化物歧化酶和细胞外超氧化物歧化酶,在清除 O2(.-) 方面发挥着关键作用。本综述重点关注编码这些酶的 sod 基因的调控,重点是人基因。总结并以图表形式描述了目前关于 sod 结构和调控的知识。迄今为止,对编码 Cu/ZnSOD(sod1)的基因的研究主要集中在编码区的改变及其与肌萎缩侧索硬化症的关联上。核苷酸序列的评估表明 sod2 基因的调节元件存在于非编码区和编码区。与 sod2 相关的变化导致表达水平以及蛋白质功能的改变。我们还讨论了与病理状况相关的 SOD 表达变化的结构基础,以及在哪些方面需要进一步研究以确定 SODs 与疾病之间的关系。

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