Cargando…

A Mutation in the Gene Encoding Mitochondrial Mg(2+) Channel MRS2 Results in Demyelination in the Rat

The rat demyelination (dmy) mutation serves as a unique model system to investigate the maintenance of myelin, because it provokes severe myelin breakdown in the central nervous system (CNS) after normal postnatal completion of myelination. Here, we report the molecular characterization of this muta...

Descripción completa

Detalles Bibliográficos
Autores principales: Kuramoto, Takashi, Kuwamura, Mitsuru, Tokuda, Satoko, Izawa, Takeshi, Nakane, Yoshifumi, Kitada, Kazuhiro, Akao, Masaharu, Guénet, Jean-Louis, Serikawa, Tadao
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3017111/
https://www.ncbi.nlm.nih.gov/pubmed/21253565
http://dx.doi.org/10.1371/journal.pgen.1001262
_version_ 1782195887797174272
author Kuramoto, Takashi
Kuwamura, Mitsuru
Tokuda, Satoko
Izawa, Takeshi
Nakane, Yoshifumi
Kitada, Kazuhiro
Akao, Masaharu
Guénet, Jean-Louis
Serikawa, Tadao
author_facet Kuramoto, Takashi
Kuwamura, Mitsuru
Tokuda, Satoko
Izawa, Takeshi
Nakane, Yoshifumi
Kitada, Kazuhiro
Akao, Masaharu
Guénet, Jean-Louis
Serikawa, Tadao
author_sort Kuramoto, Takashi
collection PubMed
description The rat demyelination (dmy) mutation serves as a unique model system to investigate the maintenance of myelin, because it provokes severe myelin breakdown in the central nervous system (CNS) after normal postnatal completion of myelination. Here, we report the molecular characterization of this mutation and discuss the possible pathomechanisms underlying demyelination. By positional cloning, we found that a G-to-A transition, 177 bp downstream of exon 3 of the Mrs2 (MRS2 magnesium homeostasis factor (Saccharomyces cerevisiae)) gene, generated a novel splice acceptor site which resulted in functional inactivation of the mutant allele. Transgenic rescue with wild-type Mrs2-cDNA validated our findings. Mrs2 encodes an essential component of the major Mg(2+) influx system in mitochondria of yeast as well as human cells. We showed that the dmy/dmy rats have major mitochondrial deficits with a markedly elevated lactic acid concentration in the cerebrospinal fluid, a 60% reduction in ATP, and increased numbers of mitochondria in the swollen cytoplasm of oligodendrocytes. MRS2-GFP recombinant BAC transgenic rats showed that MRS2 was dominantly expressed in neurons rather than oligodendrocytes and was ultrastructurally observed in the inner membrane of mitochondria. Our observations led to the conclusion that dmy/dmy rats suffer from a mitochondrial disease and that the maintenance of myelin has a different mechanism from its initial production. They also established that Mg(2+) homeostasis in CNS mitochondria is essential for the maintenance of myelin.
format Text
id pubmed-3017111
institution National Center for Biotechnology Information
language English
publishDate 2011
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-30171112011-01-20 A Mutation in the Gene Encoding Mitochondrial Mg(2+) Channel MRS2 Results in Demyelination in the Rat Kuramoto, Takashi Kuwamura, Mitsuru Tokuda, Satoko Izawa, Takeshi Nakane, Yoshifumi Kitada, Kazuhiro Akao, Masaharu Guénet, Jean-Louis Serikawa, Tadao PLoS Genet Research Article The rat demyelination (dmy) mutation serves as a unique model system to investigate the maintenance of myelin, because it provokes severe myelin breakdown in the central nervous system (CNS) after normal postnatal completion of myelination. Here, we report the molecular characterization of this mutation and discuss the possible pathomechanisms underlying demyelination. By positional cloning, we found that a G-to-A transition, 177 bp downstream of exon 3 of the Mrs2 (MRS2 magnesium homeostasis factor (Saccharomyces cerevisiae)) gene, generated a novel splice acceptor site which resulted in functional inactivation of the mutant allele. Transgenic rescue with wild-type Mrs2-cDNA validated our findings. Mrs2 encodes an essential component of the major Mg(2+) influx system in mitochondria of yeast as well as human cells. We showed that the dmy/dmy rats have major mitochondrial deficits with a markedly elevated lactic acid concentration in the cerebrospinal fluid, a 60% reduction in ATP, and increased numbers of mitochondria in the swollen cytoplasm of oligodendrocytes. MRS2-GFP recombinant BAC transgenic rats showed that MRS2 was dominantly expressed in neurons rather than oligodendrocytes and was ultrastructurally observed in the inner membrane of mitochondria. Our observations led to the conclusion that dmy/dmy rats suffer from a mitochondrial disease and that the maintenance of myelin has a different mechanism from its initial production. They also established that Mg(2+) homeostasis in CNS mitochondria is essential for the maintenance of myelin. Public Library of Science 2011-01-06 /pmc/articles/PMC3017111/ /pubmed/21253565 http://dx.doi.org/10.1371/journal.pgen.1001262 Text en Kuramoto et al. This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Kuramoto, Takashi
Kuwamura, Mitsuru
Tokuda, Satoko
Izawa, Takeshi
Nakane, Yoshifumi
Kitada, Kazuhiro
Akao, Masaharu
Guénet, Jean-Louis
Serikawa, Tadao
A Mutation in the Gene Encoding Mitochondrial Mg(2+) Channel MRS2 Results in Demyelination in the Rat
title A Mutation in the Gene Encoding Mitochondrial Mg(2+) Channel MRS2 Results in Demyelination in the Rat
title_full A Mutation in the Gene Encoding Mitochondrial Mg(2+) Channel MRS2 Results in Demyelination in the Rat
title_fullStr A Mutation in the Gene Encoding Mitochondrial Mg(2+) Channel MRS2 Results in Demyelination in the Rat
title_full_unstemmed A Mutation in the Gene Encoding Mitochondrial Mg(2+) Channel MRS2 Results in Demyelination in the Rat
title_short A Mutation in the Gene Encoding Mitochondrial Mg(2+) Channel MRS2 Results in Demyelination in the Rat
title_sort mutation in the gene encoding mitochondrial mg(2+) channel mrs2 results in demyelination in the rat
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3017111/
https://www.ncbi.nlm.nih.gov/pubmed/21253565
http://dx.doi.org/10.1371/journal.pgen.1001262
work_keys_str_mv AT kuramototakashi amutationinthegeneencodingmitochondrialmg2channelmrs2resultsindemyelinationintherat
AT kuwamuramitsuru amutationinthegeneencodingmitochondrialmg2channelmrs2resultsindemyelinationintherat
AT tokudasatoko amutationinthegeneencodingmitochondrialmg2channelmrs2resultsindemyelinationintherat
AT izawatakeshi amutationinthegeneencodingmitochondrialmg2channelmrs2resultsindemyelinationintherat
AT nakaneyoshifumi amutationinthegeneencodingmitochondrialmg2channelmrs2resultsindemyelinationintherat
AT kitadakazuhiro amutationinthegeneencodingmitochondrialmg2channelmrs2resultsindemyelinationintherat
AT akaomasaharu amutationinthegeneencodingmitochondrialmg2channelmrs2resultsindemyelinationintherat
AT guenetjeanlouis amutationinthegeneencodingmitochondrialmg2channelmrs2resultsindemyelinationintherat
AT serikawatadao amutationinthegeneencodingmitochondrialmg2channelmrs2resultsindemyelinationintherat
AT kuramototakashi mutationinthegeneencodingmitochondrialmg2channelmrs2resultsindemyelinationintherat
AT kuwamuramitsuru mutationinthegeneencodingmitochondrialmg2channelmrs2resultsindemyelinationintherat
AT tokudasatoko mutationinthegeneencodingmitochondrialmg2channelmrs2resultsindemyelinationintherat
AT izawatakeshi mutationinthegeneencodingmitochondrialmg2channelmrs2resultsindemyelinationintherat
AT nakaneyoshifumi mutationinthegeneencodingmitochondrialmg2channelmrs2resultsindemyelinationintherat
AT kitadakazuhiro mutationinthegeneencodingmitochondrialmg2channelmrs2resultsindemyelinationintherat
AT akaomasaharu mutationinthegeneencodingmitochondrialmg2channelmrs2resultsindemyelinationintherat
AT guenetjeanlouis mutationinthegeneencodingmitochondrialmg2channelmrs2resultsindemyelinationintherat
AT serikawatadao mutationinthegeneencodingmitochondrialmg2channelmrs2resultsindemyelinationintherat