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mPOS mPOS is a novel mitochondrial trigger of cell death – implications for neurodegeneration

机译:MPOS MPOS是一种新型的细胞死亡线粒体触发 - 神经变性的影响

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In addition to its central role in energy metabolism, the mitochondrion has many other functions essential for cell survival. When stressed, the multifunctional mitochondria are expected to engender multifaceted cell stress with complex physiological consequences. Potential extra‐mitochondrial proteostatic burdens imposed by inefficient protein import have been largely overlooked. Accumulating evidence suggests that a diverse range of pathogenic mitochondrial stressors, which do not directly target the core protein import machinery, can reduce cell fitness by disrupting the proteostatic network in the cytosol. The resulting stress, named mitochondrial precursor overaccumulation stress ( mPOS ), is characterized by the toxic accumulation of unimported mitochondrial proteins in the cytosol. Here, we review our current understanding of how mitochondrial dysfunction can impact the cytosolic proteome and proteostatic signaling. We also discuss the intriguing possibility that the mPOS model may help untangle the cause–effect relationship between mitochondrial dysfunction and cytosolic protein aggregation, which are probably the two most prominent molecular hallmarks of neurodegenerative disease.
机译:除了在能量新陈代谢中的中心作用外,线粒体还具有许多对细胞存活至关重要的其他功能。当压力时,预计多功能线粒体将从复杂的生理后果接触多方面的细胞胁迫。潜在的蛋白质进口施加的潜在的额外线粒体突出剂负担在很大程度上被忽视了。积累证据表明,通过破坏细胞溶质中的蛋白质网络,可以降低细胞适应性的多种致病性线粒体应激源。所得到的应力,命名的线粒体前体过度令人患应力(MPOS),其特征在于胞质溶胶中未进口线粒体蛋白的毒性积累。在这里,我们审查了我们目前对线粒体功能障碍如何影响细胞溶质蛋白质组和突出信号传导的理解。我们还讨论了MPOS模型可以帮助解除线粒体功能障碍和细胞溶质蛋白质聚集之间的损伤关系的兴趣可能性,这可能是神经退行性疾病的两个最突出的分子标志。

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