Loss of C2orf69 defines a fatal autoinflammatory syndrome in humans and zebrafish that evokes a glycogen-storage-associated mitochondriopathy

C2orf69 的缺失定义了人类和斑马鱼的一种致命的自身炎症综合征,引发与糖原累积相关的线粒体病

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作者:Hui Hui Wong, Sze Hwee Seet, Michael Maier, Ayse Gurel, Ricardo Moreno Traspas, Cheryl Lee, Shan Zhang, Beril Talim, Abigail Y T Loh, Crystal Y Chia, Tze Shin Teoh, Danielle Sng, Jarred Rensvold, Sule Unal, Evgenia Shishkova, Ece Cepni, Fatima M Nathan, Fernanda L Sirota, Chao Liang, Nese Yarali, Pe

Abstract

Human C2orf69 is an evolutionarily conserved gene whose function is unknown. Here, we report eight unrelated families from which 20 children presented with a fatal syndrome consisting of severe autoinflammation and progredient leukoencephalopathy with recurrent seizures; 12 of these subjects, whose DNA was available, segregated homozygous loss-of-function C2orf69 variants. C2ORF69 bears homology to esterase enzymes, and orthologs can be found in most eukaryotic genomes, including that of unicellular phytoplankton. We found that endogenous C2ORF69 (1) is loosely bound to mitochondria, (2) affects mitochondrial membrane potential and oxidative respiration in cultured neurons, and (3) controls the levels of the glycogen branching enzyme 1 (GBE1) consistent with a glycogen-storage-associated mitochondriopathy. We show that CRISPR-Cas9-mediated inactivation of zebrafish C2orf69 results in lethality by 8 months of age due to spontaneous epileptic seizures, which is preceded by persistent brain inflammation. Collectively, our results delineate an autoinflammatory Mendelian disorder of C2orf69 deficiency that disrupts the development/homeostasis of the immune and central nervous systems.

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