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Cardiac and Skeletal Muscle Defects in a Mouse Model of Human Barth Syndrome

机译:人类巴氏综合征小鼠模型中的心脏和骨骼肌缺陷。

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摘要

Barth syndrome is an X-linked genetic disorder caused by mutations in the tafazzin (taz) gene and characterized by dilated cardiomyopathy, exercise intolerance, chronic fatigue, delayed growth, and neutropenia. Tafazzin is a mitochondrial transacylase required for cardiolipin remodeling. Although tafazzin function has been studied in non-mammalian model organisms, mammalian genetic loss of function approaches have not been used. We examined the consequences of tafazzin knockdown on sarcomeric mitochondria and cardiac function in mice. Tafazzin knockdown resulted in a dramatic decrease of tetralinoleoyl cardiolipin in cardiac and skeletal muscles and accumulation of monolysocardiolipins and cardiolipin molecular species with aberrant acyl groups. Electron microscopy revealed pathological changes in mitochondria, myofibrils, and mitochondrion-associated membranes in skeletal and cardiac muscles. Echocardiography and magnetic resonance imaging revealed severe cardiac abnormalities, including left ventricular dilation, left ventricular mass reduction, and depression of fractional shortening and ejection fraction in tafazzin-deficient mice. Tafazzin knockdown mice provide the first mammalian model system for Barth syndrome in which the pathophysiological relationships between altered content of mitochondrial phospholipids, ultrastructural abnormalities, myocardial and mitochondrial dysfunction, and clinical outcome can be completely investigated
机译:Barth综合征是由tafazzin(taz)基因突变引起的X连锁遗传病,其特征是扩张型心肌病,运动不耐症,慢性疲劳,生长迟缓和中性粒细胞减少。 Tafazzin是心磷脂重塑所需的线粒体转酰基酶。尽管已经在非哺乳动物模型生物中研究了tafazzin的功能,但尚未使用哺乳动物遗传功能丧失方法。我们检查了他夫嗪对小鼠肌节线粒体和心脏功能的影响。 Tafazzin组合物导致心肌和骨骼肌中四亚油酰心磷脂显着减少,以及带有异常酰基的单溶心磷脂和心磷脂分子种类的积累。电子显微镜检查显示骨骼肌和心肌线粒体,肌原纤维和线粒体相关膜的病理变化。超声心动图和磁共振成像显示严重的心脏异常,包括他法辛缺乏小鼠的左心室扩张,左心室质量减少以及分数缩短和射血分数降低。 Tafazzin组合式小鼠为Barth综合征提供了首个哺乳动物模型系统,其中线粒体磷脂含量变化,超微结构异常,心肌和线粒体功能障碍与临床结果之间的病理生理关系可以得到全面调查

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