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首页> 外文期刊>The American Journal of Human Genetics >Mutations in FBXL4 cause mitochondrial encephalopathy and a disorder of mitochondrial DNA maintenance
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Mutations in FBXL4 cause mitochondrial encephalopathy and a disorder of mitochondrial DNA maintenance

机译:FBXL4突变导致线粒体脑病和线粒体DNA维持障碍

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摘要

Nuclear genetic disorders causing mitochondrial DNA (mtDNA) depletion are clinically and genetically heterogeneous, and the molecular etiology remains undiagnosed in the majority of cases. Through whole-exome sequencing, we identified recessive nonsense and splicing mutations in FBXL4 segregating in three unrelated consanguineous kindreds in which affected children present with a fatal encephalopathy, lactic acidosis, and severe mtDNA depletion in muscle. We show that FBXL4 is an F-box protein that colocalizes with mitochondria and that loss-of-function and splice mutations in this protein result in a severe respiratory chain deficiency, loss of mitochondrial membrane potential, and a disturbance of the dynamic mitochondrial network and nucleoid distribution in fibroblasts from affected individuals. Expression of the wild-type FBXL4 transcript in cell lines from two subjects fully rescued the levels of mtDNA copy number, leading to a correction of the mitochondrial biochemical deficit. Together our data demonstrate that mutations in FBXL4 are disease causing and establish FBXL4 as a mitochondrial protein with a possible role in maintaining mtDNA integrity and stability.
机译:导致线粒体DNA(mtDNA)耗竭的核遗传疾病在临床和遗传上都是异质的,在大多数情况下,分子病因尚未得到诊断。通过全外显子测序,我们在三个无关的近亲血亲中鉴定了FBXL4的隐性无意义和剪接突变,在这些亲戚中,患病儿童出现致命性脑病,乳酸性酸中毒和肌肉中严重的mtDNA消耗。我们显示FBXL4是与线粒体共定位的F-box蛋白,该蛋白的功能丧失和剪接突变导致严重的呼吸链缺乏,线粒体膜电位丧失以及动态线粒体网络和受影响个体成纤维细胞中核苷的分布。来自两个受试者的细胞系中野生型FBXL4转录本的表达完全挽救了mtDNA拷贝数的水平,从而导致线粒体生化缺陷的纠正。我们的数据一起表明FBXL4中的突变是致病因素,并将FBXL4建立为线粒体蛋白,可能在维持mtDNA完整性和稳定性方面发挥作用。

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