Sensing, signaling and surviving mitochondrial stress

被引:0
作者
Eva-Maria Eckl
Olga Ziegemann
Luisa Krumwiede
Evelyn Fessler
Lucas T. Jae
机构
[1] Ludwig-Maximilians-Universität München,Gene Center and Department of Biochemistry
来源
Cellular and Molecular Life Sciences | 2021年 / 78卷
关键词
Mitochondrial unfolded protein response (UPRmt); Integrated stress response (ISR); Mitochondria; Protein import; Mitophagy; DELE1;
D O I
暂无
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学科分类号
摘要
Mitochondrial fidelity is a key determinant of longevity and was found to be perturbed in a multitude of disease contexts ranging from neurodegeneration to heart failure. Tight homeostatic control of the mitochondrial proteome is a crucial aspect of mitochondrial function, which is severely complicated by the evolutionary origin and resulting peculiarities of the organelle. This is, on one hand, reflected by a range of basal quality control factors such as mitochondria-resident chaperones and proteases, that assist in import and folding of precursors as well as removal of aggregated proteins. On the other hand, stress causes the activation of several additional mechanisms that counteract any damage that may threaten mitochondrial function. Countermeasures depend on the location and intensity of the stress and on a range of factors that are equipped to sense and signal the nature of the encountered perturbation. Defective mitochondrial import activates mechanisms that combat the accumulation of precursors in the cytosol and the import pore. To resolve proteotoxic stress in the organelle interior, mitochondria depend on nuclear transcriptional programs, such as the mitochondrial unfolded protein response and the integrated stress response. If organelle damage is too severe, mitochondria signal for their own destruction in a process termed mitophagy, thereby preventing further harm to the mitochondrial network and allowing the cell to salvage their biological building blocks. Here, we provide an overview of how different types and intensities of stress activate distinct pathways aimed at preserving mitochondrial fidelity.
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页码:5925 / 5951
页数:26
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共 447 条
[1]  
Hou Y(2019)Ageing as a risk factor for neurodegenerative disease Nat Rev Neurol 15 565-581
[2]  
Sandri M(2014)Proteotoxicity: an underappreciated pathology in cardiac disease J Mol Cell Cardiol 71 3-10
[3]  
Robbins J(2018)A futile battle? Protein quality control and the stress of aging Dev Cell 44 139-163
[4]  
Higuchi-Sanabria R(2020)Quality control of the mitochondrial proteome Nat Rev Mol Cell Biol 22 54-70
[5]  
Song J(1998)The genome sequence of Nature 396 133-140
[6]  
Herrmann JM(1981) and the origin of mitochondria Nature 290 457-667
[7]  
Becker T(2010)Sequence and organization of the human mitochondrial genome Nat Rev Mol Cell Biol 11 655-714
[8]  
Andersson SG(2017)Mitochondrial protein import: from proteomics to functional mechanisms Annu Rev Biochem 86 685-137
[9]  
Anderson S(2017)Mitochondrial machineries for protein import and assembly Mol Cell Res 1864 125-503
[10]  
Schmidt O(1989)Protein trafficking at the crossroads to mitochondria. Biochimica et biophysica acta Science 246 500-64