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线粒体相关膜:组成、分子机制及生理病理意义

Mitochondria-associated membranes: composition, molecular mechanisms, and physiopathological implications.

作者信息

Giorgi Carlotta, Missiroli Sonia, Patergnani Simone, Duszynski Jerzy, Wieckowski Mariusz R, Pinton Paolo

机构信息

1 Section of Pathology, Oncology and Experimental Biology, Laboratory for Technologies of Advanced Therapies (LTTA), Department of Morphology, Surgery and Experimental Medicine, University of Ferrara , Ferrara, Italy .

出版信息

Antioxid Redox Signal. 2015 Apr 20;22(12):995-1019. doi: 10.1089/ars.2014.6223. Epub 2015 Mar 13.

Abstract

SIGNIFICANCE

In all cells, the endoplasmic reticulum (ER) and mitochondria are physically connected to form junctions termed mitochondria-associated membranes (MAMs). This subcellular compartment is under intense investigation because it represents a "hot spot" for the intracellular signaling of important pathways, including the synthesis of cholesterol and phospholipids, calcium homeostasis, and reactive oxygen species (ROS) generation and activity.

RECENT ADVANCES

The advanced methods currently used to study this fascinating intracellular microdomain in detail have enabled the identification of the molecular composition of MAMs and their involvement within different physiopathological contexts.

CRITICAL ISSUES

Here, we review the knowledge regarding (i) MAMs composition in terms of protein composition, (ii) the relationship between MAMs and ROS, (iii) the involvement of MAMs in cell death programs with particular emphasis within the tumor context, (iv) the emerging role of MAMs during inflammation, and (v) the key role of MAMs alterations in selected neurological disorders.

FUTURE DIRECTIONS

Whether alterations in MAMs represent a response to the disease pathogenesis or directly contribute to the disease has not yet been unequivocally established. In any case, the signaling at the MAMs represents a promising pharmacological target for several important human diseases.

摘要

意义

在所有细胞中,内质网(ER)和线粒体在物理上相互连接形成称为线粒体相关膜(MAM)的连接。这个亚细胞区室正受到深入研究,因为它代表了重要信号通路的细胞内信号“热点”,包括胆固醇和磷脂的合成、钙稳态以及活性氧(ROS)的产生和活性。

最新进展

目前用于详细研究这个迷人的细胞内微区室的先进方法,已经能够鉴定MAM的分子组成及其在不同生理病理背景中的作用。

关键问题

在此,我们综述以下方面的知识:(i)MAM在蛋白质组成方面的组成,(ii)MAM与ROS之间的关系,(iii)MAM在细胞死亡程序中的作用,尤其着重于肿瘤背景,(iv)MAM在炎症过程中新兴的作用,以及(v)MAM改变在某些神经系统疾病中的关键作用。

未来方向

MAM的改变是对疾病发病机制的反应还是直接导致疾病,尚未明确确定。无论如何,MAM处的信号传导是几种重要人类疾病有前景的药理学靶点。

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