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生长分化因子 15 作为整合应激反应的中枢介质,是代谢紊乱和 NASH 的有前途的治疗分子。

GDF15 as a central mediator for integrated stress response and a promising therapeutic molecule for metabolic disorders and NASH.

机构信息

GI Innovatioin, Inc., Tera Tower, Songpa-daero 167, Songpa-gu, Seoul 05855, South Korea.

Severance Biomedical Science Institute and Dept. of Internal Medicine, Yonsei University College of Medicine, Yonsei-ro 50-1, Seodaemun-gu, Seoul 03722, South Korea.

出版信息

Biochim Biophys Acta Gen Subj. 2021 Mar;1865(3):129834. doi: 10.1016/j.bbagen.2020.129834. Epub 2020 Dec 25.

Abstract

BACKGROUND

Mitochondria is a key organelle for energy production and cellular adaptive response to intracellular and extracellular stresses. Mitochondrial stress can be evoked by various stimuli such as metabolic stressors or pathogen infection, which may lead to expression of 'mitokines' such as growth differentiation factor 15 (GDF15).

SCOPE OF REVIEW

This review summarizes the mechanism of GDF15 expression in response to organelle stress such as mitochondrial stress, and covers pathophysiological conditions or diseases that are associated with elevated GDF15 level. This review also illustrates the in vivo role of GDF15 expression in those stress conditions or diseases, and a potential of GDF15 as a therapeutic agent against metabolic disorders such as NASH.

MAJOR CONCLUSIONS

Mitochondrial unfolded protein response (UPRmt) is a critical process to recover from mitochondrial stress. UPRmt can induce expression of secretory proteins that can exert systemic effects (mitokines) as well as mitochondrial chaperons. GDF15 can have either protective or detrimental systemic effects in response to mitochondrial stresses, suggesting its role as a mitokine. Mounting evidence shows that GDF15 is also induced by stresses of organelles other than mitochondria such as endoplasmic reticulum (ER). GDF15 level is increased in serum or tissue of mice and human subjects with metabolic diseases such as obesity or NASH. GDF15 can modulate metabolic features of those diseases.

GENERAL SIGNIFICANCE

GDF15 play a role as an integrated stress response (ISR) beyond mitochondrial stress response. GDF15 is involved in the pathogenesis of metabolic diseases such as NASH, and also could be a candidate for therapeutic agent against those diseases.

摘要

背景

线粒体是细胞内能量产生和对细胞内外应激的适应性反应的关键细胞器。线粒体应激可被各种刺激引起,如代谢应激剂或病原体感染,这可能导致“细胞因子”如生长分化因子 15(GDF15)的表达。

综述范围

本综述总结了 GDF15 表达响应细胞器应激(如线粒体应激)的机制,并涵盖了与 GDF15 水平升高相关的病理生理状况或疾病。本综述还说明了 GDF15 在这些应激条件或疾病中的体内作用,以及 GDF15 作为治疗代谢紊乱(如 NASH)的潜在治疗剂的可能性。

主要结论

线粒体未折叠蛋白反应(UPRmt)是从线粒体应激中恢复的关键过程。UPRmt 可以诱导分泌蛋白的表达,这些蛋白可以发挥全身效应(细胞因子)以及线粒体伴侣。GDF15 可以对线粒体应激产生保护或有害的全身效应,表明其作为细胞因子的作用。越来越多的证据表明,GDF15 也可以被内质网(ER)等细胞器的应激所诱导。肥胖或 NASH 等代谢疾病的小鼠和人类血清或组织中 GDF15 水平升高。GDF15 可以调节这些疾病的代谢特征。

一般意义

GDF15 在超越线粒体应激反应的整体应激反应(ISR)中发挥作用。GDF15 参与 NASH 等代谢疾病的发病机制,也可能是治疗这些疾病的候选药物。

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