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线粒体是能够产生和传递电信号及钙信号的可兴奋细胞器。

Mitochondria are excitable organelles capable of generating and conveying electrical and calcium signals.

作者信息

Ichas F, Jouaville L S, Mazat J P

机构信息

Department of Medical Biochemistry and Molecular Biology, Integrated Biological Systems Study Group, Victor Segalen-Bordeaux 2 University, France.

出版信息

Cell. 1997 Jun 27;89(7):1145-53. doi: 10.1016/s0092-8674(00)80301-3.

Abstract

We report Ca2(+)-induced release of Ca2+ from mitochondria (mCICR) dependent on transitory opening of the permeability transition pore (PTP) operating in a low conductance mode. The Ca2+ fluxes taking place during mCICR are a direct consequence of the mitochondrial depolarization spike (mDPS) caused by PTP opening. Both mDPS and mCICR can propagate from one mitochondrion to another in vitro, generating traveling depolarization and Ca2+ waves. Mitochondria thus appear to be excitable organelles capable of generating and conveying electrical and Ca2+ signals. In living cells, mDPS/mCICR is triggered during IP3-induced Ca2+ mobilization and results in the amplification of the Ca2+ signals primarily emitted from the endoplasmic reticulum.

摘要

我们报道了依赖于以低电导模式运行的通透性转换孔(PTP)短暂开放的Ca2+诱导的线粒体Ca2+释放(mCICR)。mCICR期间发生的Ca2+通量是由PTP开放引起的线粒体去极化尖峰(mDPS)的直接结果。mDPS和mCICR在体外都可以从一个线粒体传播到另一个线粒体,产生传播性去极化和Ca2+波。因此,线粒体似乎是能够产生和传递电信号和Ca2+信号的可兴奋细胞器。在活细胞中,mDPS/mCICR在IP3诱导的Ca2+动员过程中被触发,并导致主要从内质网发出的Ca2+信号的放大。

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