线粒体Ca2+在缺血和再灌注过程中是如何变化的?渗透过渡孔活化的意义。

IF 3.3 2区 医学 Q1 PHYSIOLOGY
Journal of General Physiology Pub Date : 2025-01-06 Epub Date: 2024-12-19 DOI:10.1085/jgp.202313520
Elizabeth Murphy, David A Eisner
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引用次数: 0

摘要

心肌缺血后再灌注导致心肌细胞死亡,这归因于线粒体Ca2+浓度增加,导致线粒体通透性过渡孔(PTP)活化。评估这一假设需要了解在生理条件下控制线粒体Ca2+的机制,以及它们在缺血和再灌注期间是如何改变的。Ca2+内流被认为是通过线粒体Ca2+单转运体(MCU)发生的。然而,随着MCU的缺失,线粒体Ca2+的增加仍然发生,这表明在缺血期间存在另一种Ca2+内流机制。Ca2+外排的机制不太确定,Ca2+/H+交换和Na+依赖的Ca2+外排途径都有贡献。这两种机制的分子细节还没有完全解决。我们讨论了这一点,以及这两种途径在缺血和再灌注期间对线粒体Ca2+积累的贡献。我们进一步讨论了线粒体Ca2+在PTP激活中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
How does mitochondrial Ca2+ change during ischemia and reperfusion? Implications for activation of the permeability transition pore.

Cardiac ischemia followed by reperfusion results in cardiac cell death, which has been attributed to an increase of mitochondrial Ca2+ concentration, resulting in activation of the mitochondrial permeability transition pore (PTP). Evaluating this hypothesis requires understanding of the mechanisms responsible for control of mitochondrial Ca2+ in physiological conditions and how they are altered during both ischemia and reperfusion. Ca2+ influx is thought to occur through the mitochondrial Ca2+ uniporter (MCU). However, with deletion of the MCU, an increase in mitochondrial Ca2+ still occurs, suggesting an alternative Ca2+ influx mechanism during ischemia. There is less certainty about the mechanisms responsible for Ca2+ efflux, with contributions from both Ca2+/H+ exchange and a Na+-dependent Ca2+ efflux pathway. The molecular details of both mechanisms are not fully resolved. We discuss this and the contributions of both pathways to the accumulation of mitochondrial Ca2+ during ischemia and reperfusion. We further discuss the role of mitochondrial Ca2+ in activation of the PTP.

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来源期刊
CiteScore
6.00
自引率
10.50%
发文量
88
审稿时长
6-12 weeks
期刊介绍: General physiology is the study of biological mechanisms through analytical investigations, which decipher the molecular and cellular mechanisms underlying biological function at all levels of organization. The mission of Journal of General Physiology (JGP) is to publish mechanistic and quantitative molecular and cellular physiology of the highest quality, to provide a best-in-class author experience, and to nurture future generations of independent researchers. The major emphasis is on physiological problems at the cellular and molecular level.
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