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首页> 外文期刊>The Biochemical Journal >Emerging roles of endoplasmic reticulum-resident selenoproteins in the regulation of cellular stress responses and the implications for metabolic disease
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Emerging roles of endoplasmic reticulum-resident selenoproteins in the regulation of cellular stress responses and the implications for metabolic disease

机译:内质网居民硒蛋白在细胞应激反应调节中的新兴作用及代谢疾病的影响

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摘要

Chronic metabolic stress leads to cellular dysfunction, characterized by excessive reactive oxygen species, endoplasmic reticulum (ER) stress and inflammation, which has been implicated in the pathogenesis of obesity, type 2 diabetes and cardiovascular disease. The ER is gaining recognition as a key organelle in integrating cellular stress responses. ER homeostasis is tightly regulated by a complex antioxidant system, which includes the seven ER-resident selenoproteins — 15?kDa selenoprotein, type 2 iodothyronine deiodinase and selenoproteins S, N, K, M and T. Here, the findings from biochemical, cell-based and mouse studies investigating the function of ER-resident selenoproteins are reviewed. Human experimental and genetic studies are drawn upon to highlight the relevance of these selenoproteins to the pathogenesis of metabolic disease. ER-resident selenoproteins have discrete roles in the regulation of oxidative, ER and inflammatory stress responses, as well as intracellular calcium homeostasis. To date, only two of these ER-resident selenoproteins, selenoproteins S and N have been implicated in human disease. Nonetheless, the potential of all seven ER-resident selenoproteins to ameliorate metabolic dysfunction warrants further investigation.
机译:慢性代谢应力导致细胞功能障碍,其特征在于过量的反应性氧,内质网(ER)应力和炎症,这涉及肥胖症的发病机制,2型糖尿病和心血管疾病。 ER正在识别作为整合细胞应激反应的关键细胞器。 ER稳态由复杂的抗氧化系统紧密调节,该系统包括七个ER驻留的硒蛋白 - 15?KDA Selenoprotein,2型碘吡喃蛋白脱碘酶和硒代蛋白S,N,K,M和T.这里,生物化学,细胞的结果综述了基于和小鼠研究,研究了ER-驻地硒蛋白的功能。提出了人类的实验和遗传研究,突出了这些硒蛋白与代谢疾病发病机制的相关性。 ER-驻留的Selenoproteins在调节氧化,ER和炎症应激反应中具有离散的作用,以及细胞内钙稳态。迄今为止,只有两种静静脉塞列伦蛋白,硒蛋白S和N都涉及人类疾病。尽管如此,所有七种ER驻留硒蛋白的潜力都会改善代谢功能障碍认证。

著录项

  • 来源
    《The Biochemical Journal》 |2018年第6期|共21页
  • 作者单位

    Centre for Molecular and Medical Research School of Medicine Deakin University 75 Pigdons Rd Waurn Ponds 3216 Victoria Australia;

    Institute for Physical Activity and Nutrition (IPAN) School of Exercise and Nutrition Sciences Deakin University Burwood Victoria Australia;

    Department of Medicine - Austin Health The University of Melbourne Heidelberg Victoria Australia;

    Department of Physiology Anatomy &

    Microbiology School of Life Sciences La Trobe University Bundoora Victoria Australia;

    Centre for Molecular and Medical Research School of Medicine Deakin University 75 Pigdons Rd Waurn Ponds 3216 Victoria Australia;

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  • 原文格式 PDF
  • 正文语种 other
  • 中图分类 生物化学;
  • 关键词

    cellular stress; endoplasmic reticulum; metabolic disease; SelN; selenoprotein; SEPS1;

    机译:细胞应激;内质网;代谢疾病;Seln;selenoprotein;seps1;

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