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PMID: 19513673 Published · ppublish English Journal Article

Oxidative phosphorylation: synthesis of mitochondrially encoded proteins and assembly of individual structural subunits into functional holoenzyme complexes.

Methods in molecular biology (Clifton, N.J.) ·Vol. 554 ·2009-00-00 ·Pages 143-62

Leary SC, Sasarman F

Abstract

The bulk of ATP consumed by various cellular processes in higher eukaryotes is normally produced by five multimeric protein complexes (I-V) embedded within the inner mitochondrial membrane, in a process known as oxidative phosphorylation (OXPHOS). Maintenance of energy homeostasis under most physiological conditions is therefore contingent upon the ability of OXPHOS to meet cellular changes in bioenergetic demand, with a chronic failure to do so being a frequent cause of human disease. With the exception of Complex II, the structural subunits of OXPHOS complexes are encoded by both the nuclear and the mitochondrial genomes. The physical separation of the two genomes necessitates that the expression of the 13 mitochondrially encoded polypeptides be co-ordinated with that of relevant nuclear-encoded partners in order to assemble functional holoenzyme complexes. Complex biogenesis is a highly ordered process, and several nuclear-encoded factors that function at distinct stages in the assembly of individual OXPHOS complexes have been identified.

MeSH Terms
Animals Blotting, Western Cells, Cultured Fibroblasts/enzymology Holoenzymes/metabolism Humans Mice Mitochondria/enzymology Mitochondrial Proteins/isolation & purification,metabolism Multienzyme Complexes/isolation & purification,metabolism Nuclear Proteins/isolation & purification,metabolism Oxidative Phosphorylation Protein Biosynthesis Protein Subunits Spinal Cord/cytology,enzymology
Chemicals
Holoenzymes Mitochondrial Proteins Multienzyme Complexes Nuclear Proteins Protein Subunits
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Leary Scot C
Montreal Neurological Institute and Department of Human Genetics, McGill University, Montreal, QC, Canada.
Sasarman Florin
Article Info
Journal
Methods in molecular biology (Clifton, N.J.)
Abbr.
Methods Mol Biol
ISSN
1064-3745
Published
2009-00-00
Pages
143-62
Language
English
Region
United States
NLM ID
9214969
Subset
IM
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