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呼吸链信号对于心脏缺血后的适应性重构至关重要。

Respiratory chain signalling is essential for adaptive remodelling following cardiac ischaemia.

机构信息

Faculty of Medicine and Health Technology, Tampere University, Tampere, Finland.

Institute of Biotechnology, University of Helsinki, Helsinki, Finland.

出版信息

J Cell Mol Med. 2020 Mar;24(6):3534-3548. doi: 10.1111/jcmm.15043. Epub 2020 Feb 10.

Abstract

Cardiac ischaemia-reperfusion (I/R) injury has been attributed to stress signals arising from an impaired mitochondrial electron transport chain (ETC), which include redox imbalance, metabolic stalling and excessive production of reactive oxygen species (ROS). The alternative oxidase (AOX) is a respiratory enzyme, absent in mammals, that accepts electrons from a reduced quinone pool to reduce oxygen to water, thereby restoring electron flux when impaired and, in the process, blunting ROS production. Hence, AOX represents a natural rescue mechanism from respiratory stress. This study aimed to determine how respiratory restoration through xenotopically expressed AOX affects the re-perfused post-ischaemic mouse heart. As expected, AOX supports ETC function and attenuates the ROS load in post-anoxic heart mitochondria. However, post-ischaemic cardiac remodelling over 3 and 9 weeks was not improved. AOX blunted transcript levels of factors known to be up-regulated upon I/R such as the atrial natriuretic peptide (Anp) whilst expression of pro-fibrotic and pro-apoptotic transcripts were increased. Ex vivo analysis revealed contractile failure at nine but not 3 weeks after ischaemia whilst label-free quantitative proteomics identified an increase in proteins promoting adverse extracellular matrix remodelling. Together, this indicates an essential role for ETC-derived signals during cardiac adaptive remodelling and identified ROS as a possible effector.

摘要

心肌缺血再灌注(I/R)损伤归因于受损线粒体电子传递链(ETC)产生的应激信号,其中包括氧化还原失衡、代谢停滞和活性氧(ROS)的过度产生。交替氧化酶(AOX)是一种呼吸酶,在哺乳动物中不存在,它接受来自还原醌库的电子,将氧气还原为水,从而在受损时恢复电子流,并在此过程中减少 ROS 的产生。因此,AOX 代表了一种从呼吸应激中自然恢复的机制。本研究旨在确定通过异源表达 AOX 恢复呼吸对再灌注缺血后小鼠心脏的影响。正如预期的那样,AOX 支持 ETC 功能,并减轻缺氧后心脏线粒体中的 ROS 负荷。然而,缺血后 3 周和 9 周的心脏重构并未得到改善。AOX 减轻了已知在 I/R 后上调的因子的转录水平,如心房利钠肽(Anp),而促纤维化和促凋亡转录本的表达增加。离体分析显示缺血后 9 周而非 3 周时出现收缩功能衰竭,而无标记定量蛋白质组学鉴定出促进细胞外基质不利重塑的蛋白增加。总之,这表明 ETC 衍生信号在心脏适应性重构过程中具有重要作用,并确定 ROS 可能是一种效应因子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/10ed/7131948/cb84125c4fa5/JCMM-24-3534-g001.jpg

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