粒体自噬
线粒体分裂
细胞生物学
线粒体
生物
细胞代谢
人口
线粒体DNA
裂变
线粒体融合
自噬
遗传学
新陈代谢
医学
生物化学
细胞凋亡
物理
基因
中子
环境卫生
量子力学
作者
Rajdeep Das,Oishee Chakrabarti
出处
期刊:Biochemical Society Transactions
[Portland Press]
日期:2020-03-27
卷期号:48 (2): 631-644
被引量:45
摘要
The cellular mitochondrial population undergoes repeated cycles of fission and fusion to maintain its integrity, as well as overall cellular homeostasis. While equilibrium usually exists between the fission–fusion dynamics, their rates are influenced by organellar and cellular metabolic and pathogenic conditions. Under conditions of cellular stress, there is a disruption of this fission and fusion balance and mitochondria undergo either increased fusion, forming a hyperfused meshwork or excessive fission to counteract stress and remove damaged mitochondria via mitophagy. While some previous reports suggest that hyperfusion is initiated to ameliorate cellular stress, recent studies show its negative impact on cellular health in disease conditions. The exact mechanism of mitochondrial hyperfusion and its role in maintaining cellular health and homeostasis, however, remain unclear. In this review, we aim to highlight the different aspects of mitochondrial hyperfusion in either promoting or mitigating stress and also its role in immunity and diseases.
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