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线粒体的超微结构及其与功能和生物能量学的关系。

Ultrastructure of the mitochondrion and its bearing on function and bioenergetics.

作者信息

Benard Giovanni, Rossignol Rodrigue

机构信息

INSERM U688, Bordeaux, France.

出版信息

Antioxid Redox Signal. 2008 Aug;10(8):1313-42. doi: 10.1089/ars.2007.2000.

Abstract

The recently ascertained network and dynamic organization of the mitochondrion, as well as the demonstration of energy proteins and metabolites subcompartmentalization, have led to a reconsideration of the relationships between organellar form and function. In particular, the impact of mitochondrial morphological changes on bioenergetics is inseparable. Several observations indicate that mitochondrial energy production may be controlled by structural rearrangements of the organelle both interiorly and globally, including the remodeling of cristae morphology and elongation or fragmentation of the tubular network organization, respectively. These changes are mediated by fusion or fission reactions in response to physiological signals that remain unidentified. They lead to important changes in the internal diffusion of energy metabolites, the sequestration and conduction of the electric membrane potential (Delta Psi), and possibly the delivery of newly synthesized ATP to various cellular areas. Moreover, the physiological or even pathological context also determines the morphology of the mitochondrion, suggesting a tight and mutual control between mitochondrial form and bioenergetics. In this review, we delve into the link between mitochondrial structure and energy metabolism.

摘要

线粒体最近确定的网络和动态组织,以及能量蛋白和代谢物亚区室化的证明,促使人们重新审视细胞器形态与功能之间的关系。特别是,线粒体形态变化对生物能量学的影响是不可分割的。一些观察结果表明,线粒体能量产生可能受细胞器内部和整体结构重排的控制,分别包括嵴形态的重塑以及管状网络组织的延长或碎片化。这些变化是由融合或裂变反应介导的,以响应尚未确定的生理信号。它们导致能量代谢物内部扩散、电膜电位(ΔΨ)的隔离和传导以及新合成的ATP向细胞各个区域的输送发生重要变化。此外,生理甚至病理背景也决定了线粒体的形态,这表明线粒体形态与生物能量学之间存在紧密的相互控制。在这篇综述中,我们深入探讨线粒体结构与能量代谢之间的联系。

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