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衰老过程中线粒体膜电位的降低:线粒体通透性转换孔的作用。

The Reduction in the Mitochondrial Membrane Potential in Aging: The Role of the Mitochondrial Permeability Transition Pore.

作者信息

Rottenberg Hagai

机构信息

New Hope Biomedical R&D, 23 W. Bridge Street, New Hope, PA 18938, USA.

出版信息

Int J Mol Sci. 2023 Aug 1;24(15):12295. doi: 10.3390/ijms241512295.

Abstract

It is widely reported that the mitochondrial membrane potential, ∆Ψm, is reduced in aging animals. It was recently suggested that the lower ∆Ψm in aged animals modulates mitochondrial bioenergetics and that this effect is a major cause of aging since artificially increased ∆Ψm in increased lifespan. Here, I critically review studies that reported reduction in ∆Ψm in aged animals, including worms, and conclude that many of these observations are best interpreted as evidence that the fraction of depolarized mitochondria is increased in aged cells because of the enhanced activation of the mitochondrial permeability transition pore, mPTP. Activation of the voltage-gated mPTP depolarizes the mitochondria, inhibits oxidative phosphorylation, releases large amounts of calcium and mROS, and depletes cellular NAD, thus accelerating degenerative diseases and aging. Since the inhibition of mPTP was shown to restore ∆Ψm and to retard aging, the reported lifespan extension by artificially generated ∆Ψm in is best explained by inhibition of the voltage-gated mPTP. Similarly, the reported activation of the mitochondrial unfolded protein response by reduction in ∆Ψm and the reported preservation of ∆Ψm in dietary restriction treatment in are best explained as resulting from activation or inhibition of the voltage-gated mPTP, respectively.

摘要

广泛报道称,衰老动物的线粒体膜电位(∆Ψm)会降低。最近有研究表明,老年动物较低的∆Ψm会调节线粒体生物能量学,并且这种效应是衰老的主要原因,因为人为增加∆Ψm可延长寿命。在此,我批判性地回顾了报道老年动物(包括蠕虫)∆Ψm降低的研究,并得出结论,这些观察结果中的许多最好解释为,由于线粒体通透性转换孔(mPTP)的激活增强,老年细胞中去极化线粒体的比例增加。电压门控mPTP的激活会使线粒体去极化,抑制氧化磷酸化,释放大量钙和线粒体活性氧(mROS),并消耗细胞内的烟酰胺腺嘌呤二核苷酸(NAD),从而加速退行性疾病和衰老。由于已证明抑制mPTP可恢复∆Ψm并延缓衰老,因此报道的通过人为产生∆Ψm延长寿命的现象,最好解释为电压门控mPTP受到抑制。同样,报道的∆Ψm降低激活线粒体未折叠蛋白反应以及报道的饮食限制处理中∆Ψm的维持,最好分别解释为电压门控mPTP的激活或抑制所致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/43f9/10418870/71c15bc51cec/ijms-24-12295-g001.jpg

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