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线粒体对动物生理学的贡献:从稳态传感器到钙信号传导和细胞死亡

Contributions of mitochondria to animal physiology: from homeostatic sensor to calcium signalling and cell death.

作者信息

Duchen M R

机构信息

Department of Physiology, University College London, Gower Street, London WC1E 6BT, UK.

出版信息

J Physiol. 1999 Apr 1;516 ( Pt 1)(Pt 1):1-17. doi: 10.1111/j.1469-7793.1999.001aa.x.

Abstract

Over recent years, it has become clear that mitochondria play a central role in many key aspects of animal physiology and pathophysiology. Their central and ubiquitous task is clearly the production of ATP. Nevertheless, they also play subtle roles in glucose homeostasis, acting as the sensor for substrate supply in the transduction pathway that promotes insulin secretion by the pancreatic -cell and that modulates the excitability of the hypothalamic glucose-sensitive neurons involved in appetite control. Mitochondria may also act as sensors of availability of oxygen, the other major mitochondrial substrate, in the regulation of respiration. Mitochondria take up calcium, and the high opacity mitochondrial calcium uptake pathway provides a mechanism that couples energy demand to increased ATP production through the calcium-dependent upregulation of mitochondrial enzyme activity. Mitochondrial calcium accumulation may also have a substantial impact on the spatiotemporal dynamics of cellular calcium signals, with subtle differences of detail in different cell types. Recent work has also revealed the centrality of mitochondrial dysfunction as an irreversible step in the pathway to both necrotic and apoptotic cell death. This review looks at recent developments in these rapidly evolving areas of cell physiology in an attempt to draw together disparate areas of research into a common theme.

摘要

近年来,线粒体在动物生理学和病理生理学的许多关键方面发挥核心作用已变得清晰。它们核心且普遍存在的任务显然是ATP的产生。然而,它们在葡萄糖稳态中也发挥着微妙作用,在促进胰腺β细胞分泌胰岛素以及调节参与食欲控制的下丘脑葡萄糖敏感神经元兴奋性的转导途径中作为底物供应的传感器。线粒体在呼吸调节中还可能作为另一种主要线粒体底物——氧气可用性的传感器。线粒体摄取钙,高通透性线粒体钙摄取途径提供了一种机制,通过钙依赖性上调线粒体酶活性将能量需求与增加的ATP产生相耦合。线粒体钙积累也可能对细胞钙信号的时空动态产生重大影响,在不同细胞类型中存在细微的细节差异。最近的研究还揭示了线粒体功能障碍作为坏死性和凋亡性细胞死亡途径中不可逆转步骤的核心地位。本综述着眼于细胞生理学这些快速发展领域的最新进展,试图将不同的研究领域归纳为一个共同主题。

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