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心脏缺血/再灌注对线粒体-细胞骨架相互作用的影响。

The impact of cardiac ischemia/reperfusion on the mitochondria-cytoskeleton interactions.

作者信息

Bagur Rafaela, Tanguy Stéphane, Foriel Sarah, Grichine Alexei, Sanchez Caroline, Pernet-Gallay Karin, Kaambre Tuuli, Kuznetsov Andrey V, Usson Yves, Boucher François, Guzun Rita

机构信息

University Grenoble Alpes, Laboratory of Fundamental and Applied Bioenergetics, INSERM U1055, Grenoble, France; University Grenoble Alpes, TIMC-IMAG, CNRS, UMR5525, Grenoble, France.

University Grenoble Alpes, TIMC-IMAG, CNRS, UMR5525, Grenoble, France.

出版信息

Biochim Biophys Acta. 2016 Jun;1862(6):1159-71. doi: 10.1016/j.bbadis.2016.03.009. Epub 2016 Mar 11.

Abstract

Cardiac ischemia-reperfusion (IR) injury compromises mitochondrial oxidative phosphorylation (OxPhos) and compartmentalized intracellular energy transfer via the phosphocreatine/creatine kinase (CK) network. The restriction of ATP/ADP diffusion at the level of the mitochondrial outer membrane (MOM) is an essential element of compartmentalized energy transfer. In adult cardiomyocytes, the MOM permeability to ADP is regulated by the interaction of voltage-dependent anion channel with cytoskeletal proteins, particularly with β tubulin II. The IR-injury alters the expression and the intracellular arrangement of cytoskeletal proteins. The objective of the present study was to investigate the impact of IR on the intracellular arrangement of β tubulin II and its effect on the regulation of mitochondrial respiration. Perfused rat hearts were subjected to total ischemia (for 20min (I20) and 45min (I45)) or to ischemia followed by 30min of reperfusion (I20R and I45R groups). High resolution respirometry and fluorescent confocal microscopy were used to study respiration, β tubulin II and mitochondrial arrangements in cardiac fibers. The results of these experiments evidence a heterogeneous response of mitochondria to IR-induced damage. Moreover, the intracellular rearrangement of β tubulin II, which in the control group colocalized with mitochondria, was associated with increased apparent affinity of OxPhos for ADP, decreased regulation of respiration by creatine without altering mitochondrial CK activity and the ratio between octameric to dimeric isoenzymes. The results of this study allow us to highlight changes of mitochondrial interactions with cytoskeleton as one of the possible mechanisms underlying cardiac IR injury.

摘要

心脏缺血再灌注(IR)损伤会损害线粒体氧化磷酸化(OxPhos)以及通过磷酸肌酸/肌酸激酶(CK)网络进行的细胞内能量分隔转移。线粒体外膜(MOM)水平上ATP/ADP扩散的限制是能量分隔转移的一个关键要素。在成年心肌细胞中,MOM对ADP的通透性由电压依赖性阴离子通道与细胞骨架蛋白(特别是β微管蛋白II)的相互作用调节。IR损伤会改变细胞骨架蛋白的表达和细胞内排列。本研究的目的是探究IR对β微管蛋白II细胞内排列的影响及其对线粒体呼吸调节的作用。对灌注的大鼠心脏进行完全缺血(20分钟(I20)和45分钟(I45))或缺血后再灌注30分钟(I20R和I45R组)。采用高分辨率呼吸测定法和荧光共聚焦显微镜来研究心脏纤维中的呼吸、β微管蛋白II和线粒体排列。这些实验结果证明线粒体对IR诱导损伤的反应具有异质性。此外,β微管蛋白II在对照组中与线粒体共定位,其细胞内重排与OxPhos对ADP的表观亲和力增加、肌酸对呼吸的调节作用降低有关,而线粒体CK活性以及八聚体与二聚体同工酶的比例未发生改变。本研究结果使我们能够突出线粒体与细胞骨架相互作用的变化,将其作为心脏IR损伤潜在的可能机制之一。

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