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线粒体通透性转换孔开放的双重动力学。

Dual dynamics of mitochondrial permeability transition pore opening.

机构信息

Unit of Theoretical Chronobiology, Faculté des Sciences, Université Libre de Bruxelles (ULB) CP231, B1050, Brussels, Belgium.

UMR-S 1174, Université Paris-Sud, INSERM, 91405, Orsay, France.

出版信息

Sci Rep. 2020 Mar 3;10(1):3924. doi: 10.1038/s41598-020-60177-1.

Abstract

Mitochondria play an essential role in bioenergetics and cellular Ca[Formula: see text] handling. The mitochondrial permeability transition pore (mPTP) is a non-specific channel located in the inner mitochondrial membrane. Long-lasting openings of the pore allow the rapid passage of ions and large molecules, which can result in cell death. The mPTP also exhibits transient, low conductance openings that contribute to Ca[Formula: see text] homeostasis. Although many regulators of the pore have been identified, none of them uniquely governs the passage between the two operating modes, which thus probably relies on a still unidentified network of interactions. By developing a core computational model for mPTP opening under the control of mitochondrial voltage and Ca[Formula: see text], we uncovered the existence of a positive feedback loop leading to bistability. The characteristics of the two stable steady-states correspond to those of the two opening states. When inserted in a full model of Ca[Formula: see text] handling by mitochondria, our description of the pore reproduces observations in mitochondrial suspensions. Moreover, the model predicted the occurrence of hysteresis in the switching between the two modes, upon addition and removal of free Ca[Formula: see text] in the extra-mitochondrial medium. Stochastic simulations then confirmed that the pore can undergo transient openings resembling those observed in intact cells.

摘要

线粒体在生物能量学和细胞 Ca[Formula: see text] 处理中发挥着重要作用。线粒体通透性转换孔(mPTP)是一种位于线粒体内膜的非特异性通道。该孔的长时间开放允许离子和大分子快速通过,这可能导致细胞死亡。mPTP 还表现出短暂的、低电导的开放,有助于 Ca[Formula: see text] 稳态。尽管已经鉴定出许多孔的调节剂,但没有一种能够独特地控制两种工作模式之间的通道,因此可能依赖于一个尚未识别的相互作用网络。通过开发一个在线粒体电压和 Ca[Formula: see text] 控制下 mPTP 开放的核心计算模型,我们发现了一个正反馈环导致双稳态的存在。两个稳定的稳态的特征与两个开放状态的特征相对应。当插入线粒体 Ca[Formula: see text] 处理的完整模型中时,我们对孔的描述再现了线粒体悬浮液中的观察结果。此外,该模型预测了在外加和去除线粒体外介质中的游离 Ca[Formula: see text] 时,两种模式之间的切换会出现滞后现象。随后的随机模拟证实,该孔可以经历类似于在完整细胞中观察到的短暂开放。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2c97/7054270/93405be4d404/41598_2020_60177_Fig1_HTML.jpg

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