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Lessons from the Discovery of Mitochondrial Fragmentation (Fission): A Review and Update

机译:线粒体断裂(裂变)发现的教训:回顾与更新

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摘要

Thirty-five years ago, we described fragmentation of the mitochondrial population in a living cell into small vesicles (mitochondrial fission). Subsequently, this phenomenon has become an object of general interest due to its involvement in the process of oxidative stress-related cell death and having high relevance to the incidence of a pathological phenotype. Tentatively, the key component of mitochondrial fission process is segregation and further asymmetric separation of a mitochondrial body yielding healthy (normally functioning) and impaired (incapable to function in a normal way) organelles with subsequent decomposition and removal of impaired elements through autophagy (mitophagy). We speculate that mitochondria contain cytoskeletal elements, which maintain the mitochondrial shape, and also are involved in the process of intramitochondrial segregation of waste products. We suggest that perturbation of the mitochondrial fission/fusion machinery and slowdown of the removal process of nonfunctional mitochondrial structures led to the increase of the proportion of impaired mitochondrial elements. When the concentration of malfunctioning mitochondria reaches a certain threshold, this can lead to various pathologies, including aging. Overall, we suggest a process of mitochondrial fission to be an essential component of a complex system controlling a healthy cell phenotype. The role of reactive oxygen species in mitochondrial fission is discussed.
机译:三十五年前,我们描述了活细胞中线粒体群体向小囊泡的分裂(线粒体裂变)。随后,由于该现象参与了与氧化应激相关的细胞死亡过程,并且与病理表型的发生率高度相关,因此已经成为人们普遍关注的对象。暂时地,线粒体裂变过程的关键组成部分是线粒体的分离和进一步不对称分离,产生健康的(正常运行)和受损的(无法正常运行)细胞器,随后通过自噬(有丝分裂)分解和去除受损的元素。 。我们推测线粒体包含细胞骨架元素,维持线粒体的形状,并且还参与废物线粒体内的分离过程。我们建议线粒体裂变/融合机制的扰动和非功能性线粒体结构的清除过程的减慢导致受损的线粒体元素的比例增加。当线粒体功能异常的浓度达到某个阈值时,这可能导致各种病理,包括衰老。总体而言,我们建议线粒体分裂过程是控制健康细胞表型的复杂系统的重要组成部分。讨论了活性氧在线粒体裂变中的作用。

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