Mitochondrial DNA Damage and Dysfunction Associated With Oxidative Stress in Failing Hearts After Myocardial Infarction

线粒体 细胞色素c氧化酶 活性氧 线粒体DNA 医学 氧化应激 生物 呼吸链 内科学 分子生物学 化学 内分泌学 细胞生物学 基因 生物化学
作者
Tomomi Ide,Hiroyuki Tsutsui,Shunji Hayashidani,Dongchon Kang,Nobuhiro Suematsu,Kei‐ichiro Nakamura,Hideo Utsumi,Naotaka Hamasaki,Akira Takeshita
出处
期刊:Circulation Research [Ovid Technologies (Wolters Kluwer)]
卷期号:88 (5): 529-535 被引量:688
标识
DOI:10.1161/01.res.88.5.529
摘要

Abstract —Mitochondria are one of the enzymatic sources of reactive oxygen species (ROS) and could also be a major target for ROS-mediated damage. We hypothesized that ROS may induce mitochondrial DNA (mtDNA) damage, which leads to defects of mtDNA-encoded gene expression and respiratory chain complex enzymes and thus may contribute to the progression of left ventricular (LV) remodeling and failure after myocardial infarction (MI). In a murine model of MI and remodeling created by the left anterior descending coronary artery ligation for 4 weeks, the LV was dilated and contractility was diminished. Hydroxyl radicals, which originated from the superoxide anion, and lipid peroxide formation in the mitochondria were both increased in the noninfarcted LV from MI mice. The mtDNA copy number relative to the nuclear gene (18S rRNA) preferentially decreased by 44% in MI by a Southern blot analysis, associated with a parallel decrease (30% to 50% of sham) in the mtDNA-encoded gene transcripts, including the subunits of complex I (ND1, 2, 3, 4, 4L, and 5), complex III (cytochrome b ), complex IV (cytochrome c oxidase), and rRNA (12S and 16S). Consistent with these molecular changes, the enzymatic activity of complexes I, III, and IV decreased in MI, whereas, in contrast, complex II and citrate synthase, encoded only by nuclear DNA, both remained at normal levels. An intimate link among ROS, mtDNA damage, and defects in the electron transport function, which may lead to an additional generation of ROS, might play an important role in the development and progression of LV remodeling and failure.
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