Abstract
The biogenesis of the proton pump V-ATPase commences with the assembly of the proton pore sector V 0 in the endoplasmic reticulum (ER). This process occurs under the control of a group of assembly factors whose mutations have recently been shown to cause glycosylation disorders with overlapping phenotypes in humans. Using whole exome sequencing, we demonstrate that mutations of the accessory V-ATPase subunit ATP6AP2 cause a similar disease characterized by hepatosteatosis, lipid abnormalities, immunodeficiency and cognitive impairment. ATP6AP2 interacts with members of the V 0 assembly complex, and its ER localization is crucial for V-ATPase activity. Moreover, ATP6AP2 mutations can cause developmental defects and steatotic phenotypes when introduced into Drosophila. Altogether, our data suggest that these phenotypes are the result of a pathogenetic cascade that includes impaired V-ATPase assembly, defective lysosomal acidification, reduced MTOR signaling and autophagic misregulation.
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Cannata Serio, M., Rujano, M. A., & Simons, M. (2018, June 3). Mutations in ATP6AP2 cause autophagic liver disease in humans. Autophagy. Taylor and Francis Inc. https://doi.org/10.1080/15548627.2018.1434370
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