Alterations in inter-organelle crosstalk and Ca2+ signaling through mitochondria during proteotoxic stresses

蛋白质毒性 细胞生物学 线粒体 生物 生物发生 串扰 胞浆 蛋白质稳态 内质网 细胞器生物发生 粒体自噬 细胞室 细胞器 未折叠蛋白反应 线粒体生物发生 分区(防火) 自噬 蛋白质聚集 遗传学 生物化学 细胞 细胞凋亡 物理 光学 基因
作者
Mudassar Ali,Kannan Boosi Narayana Rao,Priyanka Majumder,Rajasri Sarkar,Koyeli Mapa
出处
期刊:Mitochondrion [Elsevier]
卷期号:57: 37-46 被引量:11
标识
DOI:10.1016/j.mito.2020.12.003
摘要

Biogenesis and function of mitochondria is profoundly dependent on cytosolic translation of mitochondrial pre-proteins and its subsequent translocation and folding inside the organelle. Continuous exposure of non-native precursor proteins, exposure to damaging by-products of oxidative phosphorylation, load of mis-targeted or misfolded proteins from neighbouring compartments and unremitting demand of communication between mitochondrial and nuclear genomes, continuously pose proteotoxic threats to the organelle. Our knowledge of cellular mechanisms to cope up with such impending threat of proteotoxicity to mitochondria, is currently evolving. In recent years, several unique response and survival pathways have been discovered shedding light on cellular strategies to cope with stressed and dysfunctional mitochondria. As mitochondria compulsorily communicate with nucleus, cytosol and endoplasmic reticulum (ER) for its own biogenesis and function and in turn maintain critical cellular processes for survival, any impairment in communication by stressed or dysfunctional mitochondria may end up with fatal consequences.In this review, we have discussed about possible sources of mitochondrial proteotoxicity and the recent developments regarding cellular strategies to counter such stress to overcome dysfunctions of the organelle. Mitochondrial communication with neighbouring subcellular compartments like ER and cytosol during proteotoxic stress have been explored. In the context of mitochondrial proteotoxicity, alterations of crucial inter-organelle connections like ER-mitochondria contact sites and its implication on mitochondrial signaling activity like Ca2+ signaling have been dissected. Furthermore, an overview of pathological conditions, mainly neurodegenerative disorders that are known to be associated with mitochondrial proteotoxicity and Ca2+ dysregulation has been presented.
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