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硒和硒蛋白在健康和疾病中的作用。

Selenium and selenoproteins in health and disease.

出版信息

Antioxid Redox Signal. 2010 Apr 1;12(7):793-5. doi: 10.1089/ars.2009.2973.

Abstract

The beneficial role of the trace element selenium (Se) in human health has been known for several decades and is attributed both to low-molecular-weight Se compounds and to its presence within 25 selenoproteins in the form of the amino acid selenocysteine (Sec). Incorporation of Sec into selenoproteins involves decoding of the UGA codon. This process requires multiple features, such as the Sec-insertion sequence (SECIS) element and protein factors, including a specific elongation factor EFSec and the SECIS-binding protein 2, SBP2. Although many selenoproteins remain functionally uncharacterized, some of their known functions include redox regulation of intracellular signaling, redox homeostasis, and thyroid hormone metabolism. Pathologically, reduced expression of selenoproteins has been directly linked with the congenital muscle disease referred to as selenoprotein N (SEPN)-related myopathy and with thyroid-hormone metabolism defects (deficiency of deiodinases due to genetic defects in SBP2). From a broader, less well defined aspect, selenium compounds and selenoproteins have been linked to prevention of some forms of cancer, Alzheimer's disease, cardiovascular disease, and life span. This forum summarizes recent advances in our understanding of important roles of selenium, selenoproteins, and factors involved in selenoprotein synthesis in health and disease and discusses potential targets for therapy.

摘要

几十年来,人们一直知道微量元素硒 (Se) 对人类健康有益,这归因于低分子量 Se 化合物及其以氨基酸硒代半胱氨酸 (Sec) 的形式存在于 25 种硒蛋白中。Sec 掺入硒蛋白涉及 UGA 密码子的解码。这一过程需要多个特征,如 Sec 插入序列 (SECIS) 元件和蛋白质因子,包括特定的延伸因子 EFSec 和 SECIS 结合蛋白 2(SBP2)。尽管许多硒蛋白的功能仍未被阐明,但它们的一些已知功能包括细胞内信号的氧化还原调节、氧化还原稳态和甲状腺激素代谢。在病理上,硒蛋白表达的减少与一种称为硒蛋白 N(SEPN)相关肌病的先天性肌肉疾病以及甲状腺激素代谢缺陷(由于 SBP2 中的遗传缺陷导致脱碘酶缺乏)直接相关。从更广泛、定义不那么明确的角度来看,硒化合物和硒蛋白与某些形式的癌症、阿尔茨海默病、心血管疾病和寿命的预防有关。本论坛总结了我们对硒、硒蛋白以及参与硒蛋白合成的因子在健康和疾病中的重要作用的最新理解,并讨论了潜在的治疗靶点。

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