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线粒体钙信号传导:生与死的讯息

Mitochondrial calcium signalling: message of life and death.

作者信息

Zecchini Erika, Siviero Roberta, Giorgi Carlotta, Rizzuto Rosario, Pinton Paolo

机构信息

Department of Experimental and Diagnostic Medicine, Section of General Pathology, Interdisciplinary Center for the Study of Inflammation (ICSI), University of Ferrara, Ferrara, Italy.

出版信息

Ital J Biochem. 2007 Dec;56(4):235-42.

Abstract

Upon physiological stimulation, mitochondria undergo a major rise in mitochondrial [Ca2+] ([Ca2+]m) in a wide variety of cell types. Here, particular attention will be focused on the mechanism that allows the low-affinity transporters of mitochondria to rapidly accumulate Ca2+, despite the low amplitude of the cytosolic [Ca2+] ([Ca2+]c) rises, i.e. the close apposition of mitochondria to the Endoplasmic Reticulum (ER), the main pool of agonist-releasable Ca2+. Upon opening of IP3-gated channels, mitochondria are able to sense not the average [Ca2+]c rise, but rather the much higher concentration occurring in the proximity of the open channels. We will then address the functional significance of this process, that spans from the activation of organelle metabolism to the alteration of organelle morphology, and consequent release of pro-apoptotic factors during apoptosis.

摘要

在生理刺激下,多种细胞类型中的线粒体都会出现线粒体[Ca2+]([Ca2+]m)大幅升高的情况。在此,我们将特别关注线粒体低亲和力转运体能够迅速积累Ca2+的机制,尽管胞质[Ca2+]([Ca2+]c)升高幅度较小,即线粒体与内质网(ER)紧密相邻,内质网是激动剂可释放Ca2+的主要储存库。当IP3门控通道打开时,线粒体能够感知到的不是平均的[Ca2+]c升高,而是开放通道附近出现的高得多的浓度。然后,我们将探讨这一过程的功能意义,其范围从细胞器代谢的激活到细胞器形态的改变,以及随后在细胞凋亡过程中促凋亡因子的释放。

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