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内质网-线粒体界面:细胞死亡的社交网络。

The ER-mitochondria interface: the social network of cell death.

作者信息

Grimm Stefan

机构信息

Imperial College London, London, UK.

出版信息

Biochim Biophys Acta. 2012 Feb;1823(2):327-34. doi: 10.1016/j.bbamcr.2011.11.018. Epub 2011 Dec 13.

Abstract

When cellular organelles communicate bad things can happen. Recent findings uncovered that the junction between the endoplasmic reticulum (ER) and the mitochondria holds a crucial role for cell death regulation. Not only does this locale connect the two best-known organelles in apoptosis, numerous regulators of cell death are concentrated at this spot, providing a terrain for intense signal transfers. Ca2+ is the most prominent signalling factor that is released from the ER and, at high concentration, mediates the transfer of an apoptosis signal to mitochondria as the executioner organelle for cell death. An elaborate array of checks and balances is fine-tuning this process including Bcl-2 family members. Moreover, MAMs, "mitochondria-associated membranes", are distinct membrane sections at the ER that are in close contact with mitochondria and have been found to exchange lipids and lipid-derived molecules such as ceramide for apoptosis induction. Recent work has also described a reverse transfer of apoptosis signals, from mitochondria to the ER, via cytochrome c release and prolonged IP3R opening or through the mitochondrial fission factor Fis1 and Bap31 at the ER, which form the ARCosome, a novel caspase-activation complex.

摘要

当细胞器进行通讯时,可能会发生不良情况。最近的研究发现,内质网(ER)与线粒体之间的连接对于细胞死亡调控起着关键作用。这个区域不仅连接了凋亡过程中两个最知名的细胞器,众多细胞死亡调节因子也集中于此,为强烈的信号传递提供了一个场所。钙离子(Ca2+)是从内质网释放的最显著信号因子,高浓度时它将凋亡信号传递给作为细胞死亡执行细胞器的线粒体。一系列精心设计的制衡机制在微调这一过程,其中包括Bcl-2家族成员。此外,“线粒体相关膜”(MAMs)是内质网上与线粒体紧密接触的独特膜区,已发现它们会交换脂质和脂质衍生分子(如神经酰胺)以诱导凋亡。最近的研究还描述了凋亡信号从线粒体到内质网的反向传递,通过细胞色素c释放和延长的肌醇三磷酸受体(IP3R)开放,或通过内质网上的线粒体分裂因子Fis1和Bap31,它们形成了一种新型的半胱天冬酶激活复合物——凋亡小体(ARCosome)。

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