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牛角综合征与凋亡诱导因子的突变有关。

Cowchock syndrome is associated with a mutation in apoptosis-inducing factor.

机构信息

Neurogenetics Branch, National Institute of Neurological Disorders and Stroke, National Institutes of Health, Bethesda, MD 20892-3705, USA.

出版信息

Am J Hum Genet. 2012 Dec 7;91(6):1095-102. doi: 10.1016/j.ajhg.2012.10.008.

Abstract

Cowchock syndrome (CMTX4) is a slowly progressive X-linked recessive disorder with axonal neuropathy, deafness, and cognitive impairment. The disease locus was previously mapped to an 11 cM region at chromosome X: q24-q26. Exome sequencing of an affected individual from the originally described family identified a missense change c.1478A>T (p.Glu493Val) in AIFM1, the gene encoding apoptosis-inducing factor (AIF) mitochondrion-associated 1. The change is at a highly conserved residue and cosegregated with the phenotype in the family. AIF is an FAD-dependent NADH oxidase that is imported into mitochondria. With apoptotic insults, a N-terminal transmembrane linker is cleaved off, producing a soluble fragment that is released into the cytosol and then transported into the nucleus, where it triggers caspase-independent apoptosis. Another AIFM1 mutation that predicts p.Arg201del has recently been associated with severe mitochondrial encephalomyopathy in two infants by impairing oxidative phosphorylation. The c.1478A>T (p.Glu493Val) mutation found in the family reported here alters the redox properties of the AIF protein and results in increased cell death via apoptosis, without affecting the activity of the respiratory chain complexes. Our findings expand the spectrum of AIF-related disease and provide insight into the effects of AIFM1 mutations.

摘要

牛臀综合征(CMTX4)是一种缓慢进展的 X 连锁隐性遗传病,伴有轴索性神经病、耳聋和认知障碍。该疾病位点先前被映射到染色体 X 的 11cM 区域:q24-q26。对最初描述的家系中受影响个体的外显子组测序发现 AIFM1 中的错义变化 c.1478A>T(p.Glu493Val),AIFM1 基因编码凋亡诱导因子(AIF)线粒体相关 1。该变化发生在高度保守的残基处,并在家系中与表型共分离。AIF 是一种依赖 FAD 的 NADH 氧化酶,可被导入线粒体。在凋亡刺激下,N 端跨膜接头被切断,产生一种可溶片段,该片段被释放到细胞质中,然后被转运到细胞核中,在细胞核中引发 caspase 非依赖性凋亡。另一种 AIFM1 突变,预测 p.Arg201del,最近与两名婴儿的严重线粒体脑肌病有关,因为它会损害氧化磷酸化。本报告中在家系中发现的 c.1478A>T(p.Glu493Val)突变改变了 AIF 蛋白的氧化还原性质,导致细胞通过凋亡死亡增加,而不影响呼吸链复合物的活性。我们的发现扩展了 AIF 相关疾病的谱,并深入了解了 AIFM1 突变的影响。

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