Cargando…

Homoplasmic mitochondrial tRNA(Pro) mutation causing exercise-induced muscle swelling and fatigue

OBJECTIVE: To demonstrate the causal role in disease of the MT-TP m.15992A>T mutation observed in patients from 5 independent families. METHODS: Lactate measurement, muscle histology, and mitochondrial activities in patients; PCR-based analyses of the size, amount, and sequence of muscle mitochon...

Descripción completa

Detalles Bibliográficos
Autores principales: Auré, Karine, Fayet, Guillemette, Chicherin, Ivan, Rucheton, Benoit, Filaut, Sandrine, Heckel, Anne-Marie, Eichler, Julie, Caillon, Florence, Péréon, Yann, Entelis, Nina, Tarassov, Ivan, Lombès, Anne
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Wolters Kluwer 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7371370/
https://www.ncbi.nlm.nih.gov/pubmed/32802947
http://dx.doi.org/10.1212/NXG.0000000000000480
_version_ 1783561111588569088
author Auré, Karine
Fayet, Guillemette
Chicherin, Ivan
Rucheton, Benoit
Filaut, Sandrine
Heckel, Anne-Marie
Eichler, Julie
Caillon, Florence
Péréon, Yann
Entelis, Nina
Tarassov, Ivan
Lombès, Anne
author_facet Auré, Karine
Fayet, Guillemette
Chicherin, Ivan
Rucheton, Benoit
Filaut, Sandrine
Heckel, Anne-Marie
Eichler, Julie
Caillon, Florence
Péréon, Yann
Entelis, Nina
Tarassov, Ivan
Lombès, Anne
author_sort Auré, Karine
collection PubMed
description OBJECTIVE: To demonstrate the causal role in disease of the MT-TP m.15992A>T mutation observed in patients from 5 independent families. METHODS: Lactate measurement, muscle histology, and mitochondrial activities in patients; PCR-based analyses of the size, amount, and sequence of muscle mitochondrial DNA (mtDNA) and proportion of the mutation; respiration, mitochondrial activities, proteins, translation, transfer RNA (tRNA) levels, and base modification state in skin fibroblasts and cybrids; and reactive oxygen species production, proliferation in the absence of glucose, and plasma membrane potential in cybrids. RESULTS: All patients presented with severe exercise intolerance and hyperlactatemia. They were associated with prominent exercise-induced muscle swelling, conspicuous in masseter muscles (2 families), and/or with congenital cataract (2 families). MRI confirmed exercise-induced muscle edema. Muscle disclosed severe combined respiratory defect. Muscle mtDNA had normal size and amount. Its sequence was almost identical in all patients, defining the haplotype as J1c10, and sharing 31 variants, only 1 of which, MT-TP m.15992A>T, was likely pathogenic. The mutation was homoplasmic in all tissues and family members. Fibroblasts and cybrids with homoplasmic mutation had defective respiration, low complex III activity, and decreased tRNA(Pro) amount. Their respiratory complexes amount and tRNA(Pro) aminoacylation appeared normal. Low proliferation in the absence of glucose demonstrated the relevance of the defects on cybrid biology while abnormal loss of cell volume when faced to plasma membrane depolarization provided a link to the muscle edema observed in patients. CONCLUSIONS: The homoplasmic MT-TP m.15992A>T mutation in the J1c10 haplotype causes exercise-induced muscle swelling and fatigue.
format Online
Article
Text
id pubmed-7371370
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Wolters Kluwer
record_format MEDLINE/PubMed
spelling pubmed-73713702020-08-13 Homoplasmic mitochondrial tRNA(Pro) mutation causing exercise-induced muscle swelling and fatigue Auré, Karine Fayet, Guillemette Chicherin, Ivan Rucheton, Benoit Filaut, Sandrine Heckel, Anne-Marie Eichler, Julie Caillon, Florence Péréon, Yann Entelis, Nina Tarassov, Ivan Lombès, Anne Neurol Genet Article OBJECTIVE: To demonstrate the causal role in disease of the MT-TP m.15992A>T mutation observed in patients from 5 independent families. METHODS: Lactate measurement, muscle histology, and mitochondrial activities in patients; PCR-based analyses of the size, amount, and sequence of muscle mitochondrial DNA (mtDNA) and proportion of the mutation; respiration, mitochondrial activities, proteins, translation, transfer RNA (tRNA) levels, and base modification state in skin fibroblasts and cybrids; and reactive oxygen species production, proliferation in the absence of glucose, and plasma membrane potential in cybrids. RESULTS: All patients presented with severe exercise intolerance and hyperlactatemia. They were associated with prominent exercise-induced muscle swelling, conspicuous in masseter muscles (2 families), and/or with congenital cataract (2 families). MRI confirmed exercise-induced muscle edema. Muscle disclosed severe combined respiratory defect. Muscle mtDNA had normal size and amount. Its sequence was almost identical in all patients, defining the haplotype as J1c10, and sharing 31 variants, only 1 of which, MT-TP m.15992A>T, was likely pathogenic. The mutation was homoplasmic in all tissues and family members. Fibroblasts and cybrids with homoplasmic mutation had defective respiration, low complex III activity, and decreased tRNA(Pro) amount. Their respiratory complexes amount and tRNA(Pro) aminoacylation appeared normal. Low proliferation in the absence of glucose demonstrated the relevance of the defects on cybrid biology while abnormal loss of cell volume when faced to plasma membrane depolarization provided a link to the muscle edema observed in patients. CONCLUSIONS: The homoplasmic MT-TP m.15992A>T mutation in the J1c10 haplotype causes exercise-induced muscle swelling and fatigue. Wolters Kluwer 2020-07-15 /pmc/articles/PMC7371370/ /pubmed/32802947 http://dx.doi.org/10.1212/NXG.0000000000000480 Text en Copyright © 2020 The Author(s). Published by Wolters Kluwer Health, Inc. on behalf of the American Academy of Neurology. This is an open access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (http://creativecommons.org/licenses/by-nc-nd/4.0/) , which permits downloading and sharing the work provided it is properly cited. The work cannot be changed in any way or used commercially without permission from the journal.
spellingShingle Article
Auré, Karine
Fayet, Guillemette
Chicherin, Ivan
Rucheton, Benoit
Filaut, Sandrine
Heckel, Anne-Marie
Eichler, Julie
Caillon, Florence
Péréon, Yann
Entelis, Nina
Tarassov, Ivan
Lombès, Anne
Homoplasmic mitochondrial tRNA(Pro) mutation causing exercise-induced muscle swelling and fatigue
title Homoplasmic mitochondrial tRNA(Pro) mutation causing exercise-induced muscle swelling and fatigue
title_full Homoplasmic mitochondrial tRNA(Pro) mutation causing exercise-induced muscle swelling and fatigue
title_fullStr Homoplasmic mitochondrial tRNA(Pro) mutation causing exercise-induced muscle swelling and fatigue
title_full_unstemmed Homoplasmic mitochondrial tRNA(Pro) mutation causing exercise-induced muscle swelling and fatigue
title_short Homoplasmic mitochondrial tRNA(Pro) mutation causing exercise-induced muscle swelling and fatigue
title_sort homoplasmic mitochondrial trna(pro) mutation causing exercise-induced muscle swelling and fatigue
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7371370/
https://www.ncbi.nlm.nih.gov/pubmed/32802947
http://dx.doi.org/10.1212/NXG.0000000000000480
work_keys_str_mv AT aurekarine homoplasmicmitochondrialtrnapromutationcausingexerciseinducedmuscleswellingandfatigue
AT fayetguillemette homoplasmicmitochondrialtrnapromutationcausingexerciseinducedmuscleswellingandfatigue
AT chicherinivan homoplasmicmitochondrialtrnapromutationcausingexerciseinducedmuscleswellingandfatigue
AT ruchetonbenoit homoplasmicmitochondrialtrnapromutationcausingexerciseinducedmuscleswellingandfatigue
AT filautsandrine homoplasmicmitochondrialtrnapromutationcausingexerciseinducedmuscleswellingandfatigue
AT heckelannemarie homoplasmicmitochondrialtrnapromutationcausingexerciseinducedmuscleswellingandfatigue
AT eichlerjulie homoplasmicmitochondrialtrnapromutationcausingexerciseinducedmuscleswellingandfatigue
AT caillonflorence homoplasmicmitochondrialtrnapromutationcausingexerciseinducedmuscleswellingandfatigue
AT pereonyann homoplasmicmitochondrialtrnapromutationcausingexerciseinducedmuscleswellingandfatigue
AT entelisnina homoplasmicmitochondrialtrnapromutationcausingexerciseinducedmuscleswellingandfatigue
AT tarassovivan homoplasmicmitochondrialtrnapromutationcausingexerciseinducedmuscleswellingandfatigue
AT lombesanne homoplasmicmitochondrialtrnapromutationcausingexerciseinducedmuscleswellingandfatigue