Literature DB >> 29044765

A novel inborn error of the coenzyme Q10 biosynthesis pathway: cerebellar ataxia and static encephalomyopathy due to COQ5 C-methyltransferase deficiency.

May Christine V Malicdan1,2, Thierry Vilboux2,3, Bruria Ben-Zeev4,5,6, Jennifer Guo1, Aviva Eliyahu7,5, Ben Pode-Shakked7,8,5, Amir Dori8,5,9,10, Sravan Kakani2, Settara C Chandrasekharappa11, Carlos R Ferreira2, Natalia Shelestovich5,12, Dina Marek-Yagel7,5,6, Hadass Pri-Chen2,13, Ilan Blatt10, John E Niederhuber3,14, Langping He15, Camilo Toro1, Robert W Taylor15, John Deeken3, Tal Yardeni16, Douglas C Wallace16, William A Gahl1,2, Yair Anikster7,5,6.   

Abstract

Primary coenzyme Q10 (CoQ10 ; MIM# 607426) deficiencies are an emerging group of inherited mitochondrial disorders with heterogonous clinical phenotypes. Over a dozen genes are involved in the biosynthesis of CoQ10 , and mutations in several of these are associated with human disease. However, mutations in COQ5 (MIM# 616359), catalyzing the only C-methylation in the CoQ10 synthetic pathway, have not been implicated in human disease. Here, we report three female siblings of Iraqi-Jewish descent, who had varying degrees of cerebellar ataxia, encephalopathy, generalized tonic-clonic seizures, and cognitive disability. Whole-exome and subsequent whole-genome sequencing identified biallelic duplications in the COQ5 gene, leading to reduced levels of CoQ10 in peripheral white blood cells of all affected individuals and reduced CoQ10 levels in the only muscle tissue available from one affected proband. CoQ10 supplementation led to clinical improvement and increased the concentrations of CoQ10 in blood. This is the first report of primary CoQ10 deficiency caused by loss of function of COQ5, with delineation of the clinical, laboratory, histological, and molecular features, and insights regarding targeted treatment with CoQ10 supplementation. © Published 2017. This article is a U.S. Government work and is in the public domain in the USA.

Entities:  

Keywords:  COQ5; CoQ10; cerebellar ataxia; encephalopathy; next-generation sequencing; personalized medicine

Mesh:

Substances:

Year:  2017        PMID: 29044765      PMCID: PMC5722658          DOI: 10.1002/humu.23345

Source DB:  PubMed          Journal:  Hum Mutat        ISSN: 1059-7794            Impact factor:   4.878


  61 in total

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