Medical Genetics, Department of Pediatrics, Alberta Children's Hospital, Calgary, AB, Canada.
Department of Medical Genetics, Cumming School of Medicine, University of Calgary, Calgary, AB, Canada.
Eur J Hum Genet. 2021 Nov;29(11):1719-1724. doi: 10.1038/s41431-021-00956-0. Epub 2021 Sep 6.
Mitochondrial disorders are a heterogeneous group of rare, degenerative multisystem disorders affecting the cell's core bioenergetic and signalling functions. Spontaneous improvement is rare. We describe a novel neonatal-onset mitochondriopathy in three infants with failure to thrive, hyperlactatemia, hyperammonemia, and apparent clinical resolution before 18 months. Exome sequencing showed all three probands to be identically heterozygous for a recurrent de novo substitution, c.620G>A [p.(Arg207His)] in ATP5F1A, encoding the α-subunit of complex V. Patient-derived fibroblasts exhibited multiple deficits in complex V function and expression in vitro. Structural modelling predicts the observed substitution to create an abnormal region of negative charge on ATP5F1A's β-subunit-interacting surface, adjacent to the nearby β subunit's active site. This disorder, which presents with life-threatening neonatal manifestations, appears to follow a remitting course; the long-term prognosis remains unknown.
线粒体疾病是一组异质性的罕见退行性多系统疾病,影响细胞的核心生物能量和信号功能。自发性改善很少见。我们描述了三例新生儿起病的线粒体病,这些患儿表现为生长不良、高乳酸血症、高血氨,并且在 18 个月前明显临床缓解。外显子组测序显示,所有 3 例先证者均为 ATP5F1A 中 c.620G>A [p.(Arg207His)] 的新生杂合性重复突变,该突变编码复合物 V 的α亚单位。患者来源的成纤维细胞在体外表现出复合物 V 功能和表达的多种缺陷。结构建模预测观察到的取代会在 ATP5F1A 的β亚基相互作用表面上产生异常的负电荷区域,该区域紧邻附近的β亚基的活性位点。这种疾病表现为危及生命的新生儿表现,似乎呈缓解性病程;长期预后尚不清楚。