Coenzyme Q10 deficiencies: pathways in yeast and humans

Author:

Awad Agape M.1,Bradley Michelle C.1,Fernández-del-Río Lucía1,Nag Anish1,Tsui Hui S.1,Clarke Catherine F.1

Affiliation:

1. Department of Chemistry and Biochemistry, Molecular Biology Institute, UCLA, Los Angeles, CA 90095, U.S.A.

Abstract

Coenzyme Q (ubiquinone or CoQ) is an essential lipid that plays a role in mitochondrial respiratory electron transport and serves as an important antioxidant. In human and yeast cells, CoQ synthesis derives from aromatic ring precursors and the isoprene biosynthetic pathway. Saccharomyces cerevisiae coq mutants provide a powerful model for our understanding of CoQ biosynthesis. This review focusses on the biosynthesis of CoQ in yeast and the relevance of this model to CoQ biosynthesis in human cells. The COQ1–COQ11 yeast genes are required for efficient biosynthesis of yeast CoQ. Expression of human homologs of yeast COQ1–COQ10 genes restore CoQ biosynthesis in the corresponding yeast coq mutants, indicating profound functional conservation. Thus, yeast provides a simple yet effective model to investigate and define the function and possible pathology of human COQ (yeast or human gene involved in CoQ biosynthesis) gene polymorphisms and mutations. Biosynthesis of CoQ in yeast and human cells depends on high molecular mass multisubunit complexes consisting of several of the COQ gene products, as well as CoQ itself and CoQ intermediates. The CoQ synthome in yeast or Complex Q in human cells, is essential for de novo biosynthesis of CoQ. Although some human CoQ deficiencies respond to dietary supplementation with CoQ, in general the uptake and assimilation of this very hydrophobic lipid is inefficient. Simple natural products may serve as alternate ring precursors in CoQ biosynthesis in both yeast and human cells, and these compounds may act to enhance biosynthesis of CoQ or may bypass certain deficient steps in the CoQ biosynthetic pathway.

Publisher

Portland Press Ltd.

Subject

Molecular Biology,Biochemistry

Reference124 articles.

1. Metabolism and function of coenzyme Q;Turunen;Biochim. Biophys. Act.,2004

2. Biochemical functions of coenzyme Q10;Crane;J. Am. Coll. Nutr.,2001

3. The antioxidant role of coenzyme Q;Bentinger;Mitochondrion,2007

4. Biosynthesis and physiology of coenzyme Q in bacteria;Aussel;Biochim. Biophys. Acta,2014

5. Functional conservation of coenzyme Q biosynthetic genes among yeasts, plants, and humans;Hayashi;PLoS ONE,2014

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