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ATP6V0A1 编码液泡型 H+-ATP 酶 V0 结构域的 a1 亚基,对于人类和小鼠的大脑发育至关重要。

ATP6V0A1 encoding the a1-subunit of the V0 domain of vacuolar H-ATPases is essential for brain development in humans and mice.

机构信息

Department of Biochemistry, Hamamatsu University School of Medicine, Hamamatsu, Japan.

Department of Pediatrics, Showa University School of Medicine, Tokyo, Japan.

出版信息

Nat Commun. 2021 Apr 8;12(1):2107. doi: 10.1038/s41467-021-22389-5.

Abstract

Vacuolar H-ATPases (V-ATPases) transport protons across cellular membranes to acidify various organelles. ATP6V0A1 encodes the a1-subunit of the V0 domain of V-ATPases, which is strongly expressed in neurons. However, its role in brain development is unknown. Here we report four individuals with developmental and epileptic encephalopathy with ATP6V0A1 variants: two individuals with a de novo missense variant (R741Q) and the other two individuals with biallelic variants comprising one almost complete loss-of-function variant and one missense variant (A512P and N534D). Lysosomal acidification is significantly impaired in cell lines expressing three missense ATP6V0A1 mutants. Homozygous mutant mice harboring human R741Q (Atp6v0a1) and A512P (Atp6v0a1) variants show embryonic lethality and early postnatal mortality, respectively, suggesting that R741Q affects V-ATPase function more severely. Lysosomal dysfunction resulting in cell death, accumulated autophagosomes and lysosomes, reduced mTORC1 signaling and synaptic connectivity, and lowered neurotransmitter contents of synaptic vesicles are observed in the brains of Atp6v0a1 mice. These findings demonstrate the essential roles of ATP6V0A1/Atp6v0a1 in neuronal development in terms of integrity and connectivity of neurons in both humans and mice.

摘要

液泡型 H+-ATP 酶(V-ATPases)将质子跨细胞膜运输,以酸化各种细胞器。ATP6V0A1 编码 V-ATPases 的 V0 结构域的 a1 亚基,在神经元中强烈表达。然而,其在大脑发育中的作用尚不清楚。我们在这里报告了四个具有 ATP6V0A1 变异的发育性和癫痫性脑病个体:两个个体具有从头错义变异(R741Q),另外两个个体具有双等位基因变异,包括一个几乎完全丧失功能的变异和一个错义变异(A512P 和 N534D)。表达三种错义 ATP6V0A1 突变体的细胞系中溶酶体酸化显著受损。携带人类 R741Q(Atp6v0a1)和 A512P(Atp6v0a1)变异的纯合突变小鼠分别表现出胚胎致死性和早期新生期死亡率,表明 R741Q 更严重地影响 V-ATPase 功能。在 Atp6v0a1 小鼠的大脑中观察到溶酶体功能障碍导致细胞死亡、积累自噬体和溶酶体、降低 mTORC1 信号和突触连接以及降低突触囊泡中的神经递质含量。这些发现表明 ATP6V0A1/Atp6v0a1 在人类和小鼠的神经元发育中的完整性和连接性方面发挥着重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e261/8032687/c4c89d8352af/41467_2021_22389_Fig1_HTML.jpg

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