Recessive pathogenic variants in <i>MCAT</i> cause combined oxidative phosphorylation deficiency.

Webb, Bryn D; Nowinski, Sara M; Solmonson, Ashley; Ganesh, Jaya; Rodenburg, Richard J; Leandro, Joao; Evans, Anthony; Vu, Hieu S et al. · Elife · 2023

basic_science · Level V

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Abstract

Malonyl-CoA-acyl carrier protein transacylase (MCAT) is an enzyme involved in mitochondrial fatty acid synthesis (mtFAS) and catalyzes the transfer of the malonyl moiety of malonyl-CoA to the mitochondrial acyl carrier protein (ACP). Previously, we showed that loss-of-function of mtFAS genes, including <i>Mcat</i>, is associated with severe loss of electron transport chain (ETC) complexes in mouse immortalized skeletal myoblasts (Nowinski et al., 2020). Here, we report a proband presenting with hypotonia, failure to thrive, nystagmus, and abnormal brain MRI findings. Using whole exome sequencing, we identified biallelic variants in <i>MCAT</i>. Protein levels for NDUFB8 and COXII, subunits of complex I and IV respectively, were markedly reduced in lymphoblasts and fibroblasts, as well as SDHB for complex II in fibroblasts. ETC enzyme activities were decreased in parallel. Re-expression of wild-type <i>MCAT</i> rescued the phenotype in patient fibroblasts. This is the first report of a patient with <i>MCAT</i> pathogenic variants and combined oxidative phosphorylation deficiency.

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