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细胞色素c在细胞凋亡过程中一次性释放。

Cytochrome c is released in a single step during apoptosis.

作者信息

Goldstein J C, Muñoz-Pinedo C, Ricci J-E, Adams S R, Kelekar A, Schuler M, Tsien R Y, Green D R

机构信息

La Jolla Institute for Allergy and Immunology, 10355 Science Center Dr., San Diego, CA 92121, USA.

出版信息

Cell Death Differ. 2005 May;12(5):453-62. doi: 10.1038/sj.cdd.4401596.

Abstract

Release of cytochrome c from mitochondria is a central event in apoptotic signaling. In this study, we utilized a cytochrome c fusion that binds fluorescent biarsenical ligands (cytochrome c-4CYS (cyt. c-4CYS)) as well as cytochrome c-green fluorescent protein (cyt. c-GFP) to measure its release from mitochondria in different cell types during apoptosis. In single cells, the kinetics of cyt. c-4CYS release was indistinguishable from that of cyt. c-GFP in apoptotic cells expressing both molecules. Lowering the temperature by 7 degrees C did not affect this corelease, but further separated cytochrome c release from the subsequent decrease in mitochondrial membrane potential (DeltaPsi(m)). Cyt. c-GFP rescued respiration in cells lacking endogenous cytochrome c, and the duration of cytochrome c release was approximately 5 min in a variety of cell types induced to die by various forms of cellular stress. In addition, we could observe no evidence of caspase-dependent amplification of cytochrome c release or changes in DeltaPsi(m) preceding the release of cyt. c-GFP. We conclude that there is a general mechanism responsible for cytochrome c release that proceeds in a single step that is independent of changes in DeltaPsi(m).

摘要

细胞色素c从线粒体的释放是凋亡信号传导中的核心事件。在本研究中,我们利用了一种能结合荧光双砷配体的细胞色素c融合体(细胞色素c-4CYS(cyt. c-4CYS))以及细胞色素c-绿色荧光蛋白(cyt. c-GFP)来测量其在凋亡过程中从不同细胞类型的线粒体中的释放情况。在单细胞中,在同时表达这两种分子的凋亡细胞中,cyt. c-4CYS的释放动力学与cyt. c-GFP的释放动力学没有区别。将温度降低7摄氏度并不影响这种共释放,但进一步将细胞色素c的释放与随后线粒体膜电位(ΔΨm)的降低区分开来。Cyt. c-GFP挽救了缺乏内源性细胞色素c的细胞中的呼吸作用,并且在多种因各种形式的细胞应激而诱导死亡的细胞类型中,细胞色素c的释放持续时间约为5分钟。此外,在cyt. c-GFP释放之前,我们没有观察到细胞色素c释放的半胱天冬酶依赖性放大或ΔΨm变化的证据。我们得出结论,存在一种负责细胞色素c释放的普遍机制,该机制以独立于ΔΨm变化的单一步骤进行。

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