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PMID: 1334369 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Distribution and threshold expression of the tRNA(Lys) mutation in skeletal muscle of patients with myoclonic epilepsy and ragged-red fibers (MERRF).

American journal of human genetics ·Vol. 51 ·No. 6 ·1992-12-00 ·Pages 1187-200

Boulet L, Karpati G, Shoubridge EA

Abstract

We investigated the distribution and expression of mutant mtDNAs carrying the A-to-G mutation at position 8344 in the tRNA(Lys) gene in the skeletal muscle of four patients with myoclonus epilepsy and ragged-red fibers (MERRF). The proportion of mutant genomes was greater than 80% of total mtDNAs in muscle samples of all patients and was associated with a decrease in the activity of cytochrome c oxidase (COX). The vast majority of myoblasts, cloned from the satellite-cell population in the same muscles, were homoplasmic for the mutation. The overall proportion of mutant mtDNAs in this population was similar to that in differentiated muscle, suggesting that the ratio of mutant to wild-type mtDNAs in skeletal muscle is determined either in the ovum or during early development and changes little with age. Translation of all mtDNA-encoded genes was severely depressed in homoplasmic mutant myoblast clones but not in heteroplasmic or wild-type clones. The threshold for biochemical expression of the mutation was determined in heteroplasmic myotubes formed by fusion of different proportions of mutant and wild-type myoblasts. The magnitude of the decrease in translation in myotubes containing mutant mtDNAs was protein specific. Complex I and IV subunits were more affected than complex V subunits, and there was a rough correlation with both protein size and number of lysine residues. Approximately 15% wild-type mtDNAs restored translation and COX activity to near normal levels. These results show that the A-to-G substitution in tRNA(Lys) is a functionally recessive mutation that can be rescued by intraorganellar complementation with a small proportion of wild-type mtDNAs and explain the steep threshold for expression of the MERRF clinical phenotype.

MeSH Terms
Adult Cells, Cultured DNA, Mitochondrial/genetics Electron Transport Complex IV/metabolism Electrophoresis, Polyacrylamide Gel Epilepsies, Myoclonic/genetics,metabolism Female Flow Cytometry Gene Expression Humans Male Mitochondrial Encephalomyopathies/genetics,metabolism,physiopathology Muscles/enzymology,metabolism,pathology Mutation Phenotype Protein Biosynthesis RNA, Transfer, Lys/genetics,metabolism
Chemicals
DNA, Mitochondrial RNA, Transfer, Lys Electron Transport Complex IV
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Boulet L
Montreal Neurological Institute, McGill University, Quebec, Canada.
Karpati G
Shoubridge E A
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Article Info
Journal
American journal of human genetics
Abbr.
Am J Hum Genet
ISSN
0002-9297
Published
1992-12-00
Pages
1187-200
Language
English
Region
United States
NLM ID
0370475
PMCID
PMC1682926
Subset
IM
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