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动力相关蛋白1(Drp1)亚型在调节线粒体病理生理学中作用的新观点。

New perspectives on the role of Drp1 isoforms in regulating mitochondrial pathophysiology.

作者信息

Rosdah Ayeshah A, Smiles William J, Oakhill Jonathan S, Scott John W, Langendorf Christopher G, Delbridge Lea M D, Holien Jessica K, Lim Shiang Y

机构信息

O'Brien Institute Department, St Vincent's Institute of Medical Research, Victoria, Australia; Faculty of Medicine, Universitas Sriwijaya, Palembang, Indonesia; Department of Surgery, University of Melbourne, Victoria, Australia.

Metabolic Signalling Laboratory, St Vincent's Institute of Medical Research, Victoria, Australia.

出版信息

Pharmacol Ther. 2020 Sep;213:107594. doi: 10.1016/j.pharmthera.2020.107594. Epub 2020 May 29.

Abstract

Mitochondria are dynamic organelles constantly undergoing fusion and fission. A concerted balance between the process of mitochondrial fusion and fission is required to maintain cellular health under different physiological conditions. Mutation and dysregulation of Drp1, the major driver of mitochondrial fission, has been associated with various neurological, oncological and cardiovascular disorders. Moreover, when subjected to pathological insults, mitochondria often undergo excessive fission, generating fragmented and dysfunctional mitochondria leading to cell death. Therefore, manipulating mitochondrial fission by targeting Drp1 has been an appealing therapeutic approach for cytoprotection. However, studies have been inconsistent. Studies employing Drp1 constructs representing alternate Drp1 isoforms, have demonstrated differing impacts of these isoforms on mitochondrial fission and cell death. Furthermore, there are distinct expression patterns of Drp1 isoforms in different tissues, suggesting idiosyncratic engagement in specific cellular functions. In this review, we will discuss these inherent variations among human Drp1 isoforms and how they could affect Drp1-mediated mitochondrial fission and cell death.

摘要

线粒体是不断进行融合和裂变的动态细胞器。在不同生理条件下,需要线粒体融合和裂变过程之间的协调平衡来维持细胞健康。动力蛋白1(Drp1)是线粒体裂变的主要驱动因子,其突变和失调与各种神经、肿瘤和心血管疾病有关。此外,在受到病理损伤时,线粒体经常过度裂变,产生碎片化且功能失调的线粒体,导致细胞死亡。因此,通过靶向Drp1来操纵线粒体裂变一直是一种有吸引力的细胞保护治疗方法。然而,研究结果并不一致。使用代表不同Drp1亚型的构建体进行的研究表明,这些亚型对线粒体裂变和细胞死亡有不同的影响。此外,Drp1亚型在不同组织中有不同的表达模式,表明它们在特定细胞功能中的独特作用。在这篇综述中,我们将讨论人类Drp1亚型之间的这些内在差异,以及它们如何影响Drp1介导的线粒体裂变和细胞死亡。

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