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Whole-mitochondrial genome sequencing in primary open-angle glaucoma using massively parallel sequencing identifies novel and known pathogenic variants

机译:使用大规模平行测序在原发性开角型青光眼中进行全线粒体基因组测序,鉴定出新的和已知的致病变异

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摘要

Purpose:The aim of this study was to determine whether mutations in mitochondrial DNA play a role in high-pressure primary open-angle glaucoma (OMIM 137760) by analyzing new data from massively parallel sequencing of mitochondrial DNA.Methods:Glaucoma patients with high-tension primary open-angle glaucoma and ethnically matched and age-matched control subjects without glaucoma were recruited. The entire human mitochondrial genome was amplified in two overlapping fragments by long-range polymerase chain reaction and used as a template for massively parallel sequencing on an Ion Torrent Personal Genome Machine. All variants were confirmed by conventional Sanger sequencing.Results:Whole-mitochondrial genome sequencing was performed in 32 patients with primary open-angle glaucoma from India (n = 16) and Ireland (n = 16). In 16 of the 32 patients with primary open-angle glaucoma (50% of cases), there were 22 mitochondrial DNA mutations consisting of 7 novel mutations and 8 previously reported disease-associated sequence variants. Eight of 22 (36.4%) of the mitochondrial DNA mutations were in complex I mitochondrial genes.Conclusion:Massively parallel sequencing using the Ion Torrent Personal Genome Machine with confirmation by Sanger sequencing detected a pathogenic mitochondrial DNA mutation in 50% of the primary open-angle glaucoma cohort. Our findings support the emerging concept that mitochondrial dysfunction results in the development of glaucoma and, more specifically, that complex I defects play a significant role in primary open-angle glaucoma pathogenesis.
机译:目的:本研究旨在通过分析线粒体DNA大规模平行测序获得的新数据,确定线粒体DNA突变是否在高压原发性开角型青光眼(OMIM 137760)中起作用。招募了原发性开角型青光眼和种族匹配且年龄匹配的无青光眼的对照组。整个人类线粒体基因组通过远程聚合酶链反应在两个重叠的片段中扩增,并用作离子洪流型个人基因组仪上大规模并行测序的模板。结果:对来自印度(n = 16)和爱尔兰(n = 16)的32例原发性开角型青光眼患者进行了线粒体全基因组测序。在32例原发性开角型青光眼患者中,有16例(占病例的50%)存在22个线粒体DNA突变,其中包括7个新突变和8个先前报道的与疾病相关的序列变异。 22个线粒体DNA突变中有8个(36.4%)位于复杂的I线粒体基因中。角性青光眼队列我们的发现支持线粒体功能障碍导致青光眼发展的新概念,更具体地说,复杂的I缺陷在原发性开角型青光眼发病机理中起着重要作用。

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