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ATP6V0C 变异会损害 V-ATPase 的功能,导致一种神经发育障碍,这种障碍通常与癫痫有关。

ATP6V0C variants impair V-ATPase function causing a neurodevelopmental disorder often associated with epilepsy.

机构信息

Genetics and Molecular Biology Graduate Program, Graduate Division of Biological and Biomedical Sciences, Laney Graduate School, Emory University, Atlanta, GA, USA.

Department of Human Genetics, Emory University, Atlanta, GA, USA.

出版信息

Brain. 2023 Apr 19;146(4):1357-1372. doi: 10.1093/brain/awac330.

Abstract

The vacuolar H+-ATPase is an enzymatic complex that functions in an ATP-dependent manner to pump protons across membranes and acidify organelles, thereby creating the proton/pH gradient required for membrane trafficking by several different types of transporters. We describe heterozygous point variants in ATP6V0C, encoding the c-subunit in the membrane bound integral domain of the vacuolar H+-ATPase, in 27 patients with neurodevelopmental abnormalities with or without epilepsy. Corpus callosum hypoplasia and cardiac abnormalities were also present in some patients. In silico modelling suggested that the patient variants interfere with the interactions between the ATP6V0C and ATP6V0A subunits during ATP hydrolysis. Consistent with decreased vacuolar H+-ATPase activity, functional analyses conducted in Saccharomyces cerevisiae revealed reduced LysoSensor fluorescence and reduced growth in media containing varying concentrations of CaCl2. Knockdown of ATP6V0C in Drosophila resulted in increased duration of seizure-like behaviour, and the expression of selected patient variants in Caenorhabditis elegans led to reduced growth, motor dysfunction and reduced lifespan. In summary, this study establishes ATP6V0C as an important disease gene, describes the clinical features of the associated neurodevelopmental disorder and provides insight into disease mechanisms.

摘要

液泡型 H+-ATP 酶是一种酶复合物,以依赖于 ATP 的方式在质子跨膜泵中起作用,并使细胞器酸化,从而为几种不同类型的转运蛋白的膜运输创造所需的质子/pH 梯度。我们在 27 名患有神经发育异常伴或不伴癫痫的患者中描述了编码液泡型 H+-ATP 酶膜结合完整域 c 亚基的 ATP6V0C 的杂合点变异。一些患者还存在胼胝体发育不良和心脏异常。计算机模拟表明,患者变异会干扰 ATP 水解过程中 ATP6V0C 和 ATP6V0A 亚基之间的相互作用。与液泡型 H+-ATP 酶活性降低一致,在酿酒酵母中进行的功能分析显示 LysoSensor 荧光减少,并且在含有不同浓度 CaCl2 的培养基中生长减少。在果蝇中敲低 ATP6V0C 会导致癫痫样行为持续时间延长,并且在秀丽隐杆线虫中表达选定的患者变异会导致生长减少、运动功能障碍和寿命缩短。总之,这项研究确立了 ATP6V0C 作为一个重要的疾病基因,描述了相关神经发育障碍的临床特征,并为疾病机制提供了新的见解。

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