动力蛋白相关蛋白1与神经退行性疾病的线粒体断裂

P. Hemachandra Reddy , Tejaswini P. Reddy , Maria Manczak , Marcus J. Calkins , Ulziibat Shirendeb , Peizhong Mao
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引用次数: 305

摘要

这篇文章的目的是回顾最近的进展异常线粒体动力学,线粒体碎片和神经退行性疾病,包括阿尔茨海默病,帕金森病,亨廷顿病,肌萎缩性侧索硬化症神经元损伤。GTPase家族蛋白,包括裂变蛋白、动力蛋白相关蛋白1 (Drp1)、线粒体裂变蛋白1 (Fis1)和融合蛋白(Mfn1、Mfn2和Opa1),对维持线粒体裂变和融合平衡以及向神经元提供必需的三磷酸腺苷至关重要。其中,Drp1参与线粒体的几个重要方面,包括哺乳动物细胞中线粒体的形状、大小、分布、重塑和维持。此外,分子、细胞、电子显微镜和共聚焦成像研究的最新进展表明,Drp1与多种细胞功能有关,包括线粒体和过氧化物酶体断裂、磷酸化、SUMOylation、泛素化和细胞死亡。在过去的二十年中,在酵母、蠕虫和哺乳动物细胞的线粒体动力学研究方面取得了巨大进展;这项研究提供了Drp1与神经退行性疾病有关的证据。神经退行性疾病领域的研究人员开始认识到Drp1可能参与导致神经退行性疾病的线粒体断裂和线粒体动力学异常。本文综述了Drp1在酵母、蠕虫和哺乳动物中与线粒体分裂和融合有关的研究结果。基于Reddy等人的研究结果,我们提出AD、PD、HD、ALS等神经退行性疾病的突变蛋白与Drp1相互作用,激活线粒体裂变机制,使线粒体过度片段化,损害线粒体运输和线粒体动力学,最终导致线粒体功能障碍和神经元损伤。
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Dynamin-related protein 1 and mitochondrial fragmentation in neurodegenerative diseases

The purpose of this article is to review the recent developments of abnormal mitochondrial dynamics, mitochondrial fragmentation, and neuronal damage in neurodegenerative diseases, including Alzheimer's, Parkinson's, Huntington's, and amyotrophic lateral sclerosis. The GTPase family of proteins, including fission proteins, dynamin related protein 1 (Drp1), mitochondrial fission 1 (Fis1), and fusion proteins (Mfn1, Mfn2 and Opa1) are essential to maintain mitochondrial fission and fusion balance, and to provide necessary adenosine triphosphate to neurons. Among these, Drp1 is involved in several important aspects of mitochondria, including shape, size, distribution, remodeling, and maintenance of mitochondria in mammalian cells. In addition, recent advancements in molecular, cellular, electron microscopy, and confocal imaging studies revealed that Drp1 is associated with several cellular functions, including mitochondrial and peroxisomal fragmentation, phosphorylation, SUMOylation, ubiquitination, and cell death. In the last two decades, tremendous progress has been made in researching mitochondrial dynamics, in yeast, worms, and mammalian cells; and this research has provided evidence linking Drp1 to neurodegenerative diseases. Researchers in the neurodegenerative disease field are beginning to recognize the possible involvement of Drp1 in causing mitochondrial fragmentation and abnormal mitochondrial dynamics in neurodegenerative diseases. This article summarizes research findings relating Drp1 to mitochondrial fission and fusion, in yeast, worms, and mammals. Based on findings from the Reddy laboratory and others', we propose that mutant proteins of neurodegenerative diseases, including AD, PD, HD, and ALS, interact with Drp1, activate mitochondrial fission machinery, fragment mitochondria excessively, and impair mitochondrial transport and mitochondrial dynamics, ultimately causing mitochondrial dysfunction and neuronal damage.

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Brain Research Reviews
Brain Research Reviews 医学-神经科学
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