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首页> 外文期刊>Frontiers in Cell and Developmental Biology >SESTRINs: Emerging Dynamic Stress-Sensors in Metabolic and Environmental Health
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SESTRINs: Emerging Dynamic Stress-Sensors in Metabolic and Environmental Health

机译:斯特瑞斯:新兴动态应力传感器在代谢和环境健康中

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摘要

Proper timely management of various external and internal stresses is critical for metabolic and redox homeostasis in mammals. In particular, hyperactivation of mechanistic target of rapamycin complex (mTORC) triggered from metabolic stress and accumulation of reactive oxygen species (ROS) generated from environmental and genotoxic stress are well-known culprits leading to chronic metabolic disease conditions in humans. Sestrins are one of the metabolic and environmental stress-responsive groups of proteins, which solely have the ability to regulate both mTORC activity and ROS levels in cells, tissues and organs. While Sestrins are originally reported as one of several p53 target genes, recent studies have further delineated the roles of this group of stress-sensing proteins in the regulation of insulin sensitivity, glucose and fat metabolism, and redox-function in metabolic disease and aging. In this review, we discuss recent studies that investigated and manipulated Sestrins-mediated stress signaling pathways in metabolic and environmental health. Sestrins as an emerging dynamic group of stress-sensor proteins are drawing a spotlight as a preventive or therapeutic mechanism in both metabolic stress-associated pathologies and aging processes at the same time.
机译:适当的及时管理各种外部和内部应力对于哺乳动物中的代谢和氧化还原性稳态至关重要。特别地,从环境和遗传毒性应力产生的代谢应激和反应性氧物种(ROS的积累中触发的雷帕霉素复合物(MTORC)的机械靶标是众所周知的罪魁祸首,导致人类慢性代谢疾病病症。 Sestrins是蛋白质的代谢和环境应激反应组之一,其仅具有调节细胞,组织和器官的MTORC活性和ROS水平的能力。虽然Sestrins最初被报告为几种P53靶基因之一,但最近的研究进一步描绘了该组应激感测蛋白在调节胰岛素敏感性,葡萄糖和脂肪代谢中的作用,以及代谢疾病和老化的氧化还原功能。在本综述中,我们讨论了最近的研究,调查和操纵了斯特里斯介导的代谢和环境健康中的斯特瑞斯介导的应力信号通路。作为新出现的动态应激传感器蛋白的斯切尔斯在同一时间将聚光灯作为代谢应激相关病理和老化过程的预防或治疗机制绘制。

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