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Loss of LRPPRC causes ATP synthase deficiency

机译:LRPPRC丢失导致ATP合酶缺乏

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Defects of the oxidative phosphorylation system, in particular of cytochrome-c oxidase (COX, respiratory chain complex IV), are common causes of Leigh syndrome (LS), which is a rare neurodegenerative disorder with severe progressive neurological symptoms that usually present during infancy or early childhood. The COX-deficient form of LS is commonly caused by mutations in genes encoding COX assembly factors, e.g. SURF1, SCO1, SCO2 or COX10. However, other mutations affecting genes that encode proteins not directly involved in COX assembly can also cause LS. The leucine-rich pentatricopeptide repeat containing protein (LRPPRC) regulates mRNA stability, polyadenylation and coordinates mitochondrial translation. In humans, mutations in Lrpprc cause the French Canadian type of LS. Despite the finding that LRPPRC deficiency affects the stability of most mitochondrial mRNAs, its pathophysiological effect has mainly been attributed to COX deficiency. Surprisingly, we show here that the impaired mitochondrial respiration and reduced ATP production observed in Lrpprc conditional knockout mouse hearts is caused by an ATP synthase deficiency. Furthermore, the appearance of inactive subassembled ATP synthase complexes causes hyperpolarization and increases mitochondrial reactive oxygen species production. Our findings shed important new light on the bioenergetic consequences of the loss of LRPPRC in cardiac mitochondria.
机译:氧化磷酸化系统的缺陷,特别是细胞色素C氧化酶(COX,呼吸链复合物IV)的缺陷,是利氏综合症(LS)的常见原因,这是一种罕见的神经退行性疾病,通常在婴儿期或婴儿期出现严重的进行性神经系统症状。孩提时代。 LS的COX缺乏形式通常是由编码COX装配因子的基因突变引起的,例如SURF1,SCO1,SCO2或COX10。但是,影响编码不直接参与COX组装的蛋白质的基因的其他突变也会引起LS。富含亮氨酸的五肽重复序列蛋白(LRPPRC)调节mRNA稳定性,聚腺苷酸化并协调线粒体翻译。在人类中,Lrpprc中的突变会导致加拿大的LS型。尽管发现LRPPRC缺乏会影响大多数线粒体mRNA的稳定性,但其病理生理作用主要归因于COX缺乏。出人意料的是,我们在这里显示在Lrpprc条件性基因敲除小鼠心脏中观察到的线粒体呼吸受损和ATP生成减少是由ATP合酶缺乏引起的。此外,无活性的未组装的ATP合酶复合物的出现会引起超极化并增加线粒体活性氧的产生。我们的发现为心脏线粒体中LRPPRC丧失的生物能后果提供了重要的新启示。

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