Cargando…

A Splicing Mutation in the Novel Mitochondrial Protein DNAJC11 Causes Motor Neuron Pathology Associated with Cristae Disorganization, and Lymphoid Abnormalities in Mice

Mitochondrial structure and function is emerging as a major contributor to neuromuscular disease, highlighting the need for the complete elucidation of the underlying molecular and pathophysiological mechanisms. Following a forward genetics approach with N-ethyl-N-nitrosourea (ENU)-mediated random m...

Descripción completa

Detalles Bibliográficos
Autores principales: Ioakeimidis, Fotis, Ott, Christine, Kozjak-Pavlovic, Vera, Violitzi, Foteini, Rinotas, Vagelis, Makrinou, Eleni, Eliopoulos, Elias, Fasseas, Costas, Kollias, George, Douni, Eleni
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4128653/
https://www.ncbi.nlm.nih.gov/pubmed/25111180
http://dx.doi.org/10.1371/journal.pone.0104237
_version_ 1782330149132304384
author Ioakeimidis, Fotis
Ott, Christine
Kozjak-Pavlovic, Vera
Violitzi, Foteini
Rinotas, Vagelis
Makrinou, Eleni
Eliopoulos, Elias
Fasseas, Costas
Kollias, George
Douni, Eleni
author_facet Ioakeimidis, Fotis
Ott, Christine
Kozjak-Pavlovic, Vera
Violitzi, Foteini
Rinotas, Vagelis
Makrinou, Eleni
Eliopoulos, Elias
Fasseas, Costas
Kollias, George
Douni, Eleni
author_sort Ioakeimidis, Fotis
collection PubMed
description Mitochondrial structure and function is emerging as a major contributor to neuromuscular disease, highlighting the need for the complete elucidation of the underlying molecular and pathophysiological mechanisms. Following a forward genetics approach with N-ethyl-N-nitrosourea (ENU)-mediated random mutagenesis, we identified a novel mouse model of autosomal recessive neuromuscular disease caused by a splice-site hypomorphic mutation in a novel gene of unknown function, DnaJC11. Recent findings have demonstrated that DNAJC11 protein co-immunoprecipitates with proteins of the mitochondrial contact site (MICOS) complex involved in the formation of mitochondrial cristae and cristae junctions. Homozygous mutant mice developed locomotion defects, muscle weakness, spasticity, limb tremor, leucopenia, thymic and splenic hypoplasia, general wasting and early lethality. Neuropathological analysis showed severe vacuolation of the motor neurons in the spinal cord, originating from dilatations of the endoplasmic reticulum and notably from mitochondria that had lost their proper inner membrane organization. The causal role of the identified mutation in DnaJC11 was verified in rescue experiments by overexpressing the human ortholog. The full length 63 kDa isoform of human DNAJC11 was shown to localize in the periphery of the mitochondrial outer membrane whereas putative additional isoforms displayed differential submitochondrial localization. Moreover, we showed that DNAJC11 is assembled in a high molecular weight complex, similarly to mitofilin and that downregulation of mitofilin or SAM50 affected the levels of DNAJC11 in HeLa cells. Our findings provide the first mouse mutant for a putative MICOS protein and establish a link between DNAJC11 and neuromuscular diseases.
format Online
Article
Text
id pubmed-4128653
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-41286532014-08-12 A Splicing Mutation in the Novel Mitochondrial Protein DNAJC11 Causes Motor Neuron Pathology Associated with Cristae Disorganization, and Lymphoid Abnormalities in Mice Ioakeimidis, Fotis Ott, Christine Kozjak-Pavlovic, Vera Violitzi, Foteini Rinotas, Vagelis Makrinou, Eleni Eliopoulos, Elias Fasseas, Costas Kollias, George Douni, Eleni PLoS One Research Article Mitochondrial structure and function is emerging as a major contributor to neuromuscular disease, highlighting the need for the complete elucidation of the underlying molecular and pathophysiological mechanisms. Following a forward genetics approach with N-ethyl-N-nitrosourea (ENU)-mediated random mutagenesis, we identified a novel mouse model of autosomal recessive neuromuscular disease caused by a splice-site hypomorphic mutation in a novel gene of unknown function, DnaJC11. Recent findings have demonstrated that DNAJC11 protein co-immunoprecipitates with proteins of the mitochondrial contact site (MICOS) complex involved in the formation of mitochondrial cristae and cristae junctions. Homozygous mutant mice developed locomotion defects, muscle weakness, spasticity, limb tremor, leucopenia, thymic and splenic hypoplasia, general wasting and early lethality. Neuropathological analysis showed severe vacuolation of the motor neurons in the spinal cord, originating from dilatations of the endoplasmic reticulum and notably from mitochondria that had lost their proper inner membrane organization. The causal role of the identified mutation in DnaJC11 was verified in rescue experiments by overexpressing the human ortholog. The full length 63 kDa isoform of human DNAJC11 was shown to localize in the periphery of the mitochondrial outer membrane whereas putative additional isoforms displayed differential submitochondrial localization. Moreover, we showed that DNAJC11 is assembled in a high molecular weight complex, similarly to mitofilin and that downregulation of mitofilin or SAM50 affected the levels of DNAJC11 in HeLa cells. Our findings provide the first mouse mutant for a putative MICOS protein and establish a link between DNAJC11 and neuromuscular diseases. Public Library of Science 2014-08-11 /pmc/articles/PMC4128653/ /pubmed/25111180 http://dx.doi.org/10.1371/journal.pone.0104237 Text en © 2014 Ioakeimidis et al http://creativecommons.org/licenses/by/4.0/ 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 properly credited.
spellingShingle Research Article
Ioakeimidis, Fotis
Ott, Christine
Kozjak-Pavlovic, Vera
Violitzi, Foteini
Rinotas, Vagelis
Makrinou, Eleni
Eliopoulos, Elias
Fasseas, Costas
Kollias, George
Douni, Eleni
A Splicing Mutation in the Novel Mitochondrial Protein DNAJC11 Causes Motor Neuron Pathology Associated with Cristae Disorganization, and Lymphoid Abnormalities in Mice
title A Splicing Mutation in the Novel Mitochondrial Protein DNAJC11 Causes Motor Neuron Pathology Associated with Cristae Disorganization, and Lymphoid Abnormalities in Mice
title_full A Splicing Mutation in the Novel Mitochondrial Protein DNAJC11 Causes Motor Neuron Pathology Associated with Cristae Disorganization, and Lymphoid Abnormalities in Mice
title_fullStr A Splicing Mutation in the Novel Mitochondrial Protein DNAJC11 Causes Motor Neuron Pathology Associated with Cristae Disorganization, and Lymphoid Abnormalities in Mice
title_full_unstemmed A Splicing Mutation in the Novel Mitochondrial Protein DNAJC11 Causes Motor Neuron Pathology Associated with Cristae Disorganization, and Lymphoid Abnormalities in Mice
title_short A Splicing Mutation in the Novel Mitochondrial Protein DNAJC11 Causes Motor Neuron Pathology Associated with Cristae Disorganization, and Lymphoid Abnormalities in Mice
title_sort splicing mutation in the novel mitochondrial protein dnajc11 causes motor neuron pathology associated with cristae disorganization, and lymphoid abnormalities in mice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4128653/
https://www.ncbi.nlm.nih.gov/pubmed/25111180
http://dx.doi.org/10.1371/journal.pone.0104237
work_keys_str_mv AT ioakeimidisfotis asplicingmutationinthenovelmitochondrialproteindnajc11causesmotorneuronpathologyassociatedwithcristaedisorganizationandlymphoidabnormalitiesinmice
AT ottchristine asplicingmutationinthenovelmitochondrialproteindnajc11causesmotorneuronpathologyassociatedwithcristaedisorganizationandlymphoidabnormalitiesinmice
AT kozjakpavlovicvera asplicingmutationinthenovelmitochondrialproteindnajc11causesmotorneuronpathologyassociatedwithcristaedisorganizationandlymphoidabnormalitiesinmice
AT violitzifoteini asplicingmutationinthenovelmitochondrialproteindnajc11causesmotorneuronpathologyassociatedwithcristaedisorganizationandlymphoidabnormalitiesinmice
AT rinotasvagelis asplicingmutationinthenovelmitochondrialproteindnajc11causesmotorneuronpathologyassociatedwithcristaedisorganizationandlymphoidabnormalitiesinmice
AT makrinoueleni asplicingmutationinthenovelmitochondrialproteindnajc11causesmotorneuronpathologyassociatedwithcristaedisorganizationandlymphoidabnormalitiesinmice
AT eliopouloselias asplicingmutationinthenovelmitochondrialproteindnajc11causesmotorneuronpathologyassociatedwithcristaedisorganizationandlymphoidabnormalitiesinmice
AT fasseascostas asplicingmutationinthenovelmitochondrialproteindnajc11causesmotorneuronpathologyassociatedwithcristaedisorganizationandlymphoidabnormalitiesinmice
AT kolliasgeorge asplicingmutationinthenovelmitochondrialproteindnajc11causesmotorneuronpathologyassociatedwithcristaedisorganizationandlymphoidabnormalitiesinmice
AT dounieleni asplicingmutationinthenovelmitochondrialproteindnajc11causesmotorneuronpathologyassociatedwithcristaedisorganizationandlymphoidabnormalitiesinmice
AT ioakeimidisfotis splicingmutationinthenovelmitochondrialproteindnajc11causesmotorneuronpathologyassociatedwithcristaedisorganizationandlymphoidabnormalitiesinmice
AT ottchristine splicingmutationinthenovelmitochondrialproteindnajc11causesmotorneuronpathologyassociatedwithcristaedisorganizationandlymphoidabnormalitiesinmice
AT kozjakpavlovicvera splicingmutationinthenovelmitochondrialproteindnajc11causesmotorneuronpathologyassociatedwithcristaedisorganizationandlymphoidabnormalitiesinmice
AT violitzifoteini splicingmutationinthenovelmitochondrialproteindnajc11causesmotorneuronpathologyassociatedwithcristaedisorganizationandlymphoidabnormalitiesinmice
AT rinotasvagelis splicingmutationinthenovelmitochondrialproteindnajc11causesmotorneuronpathologyassociatedwithcristaedisorganizationandlymphoidabnormalitiesinmice
AT makrinoueleni splicingmutationinthenovelmitochondrialproteindnajc11causesmotorneuronpathologyassociatedwithcristaedisorganizationandlymphoidabnormalitiesinmice
AT eliopouloselias splicingmutationinthenovelmitochondrialproteindnajc11causesmotorneuronpathologyassociatedwithcristaedisorganizationandlymphoidabnormalitiesinmice
AT fasseascostas splicingmutationinthenovelmitochondrialproteindnajc11causesmotorneuronpathologyassociatedwithcristaedisorganizationandlymphoidabnormalitiesinmice
AT kolliasgeorge splicingmutationinthenovelmitochondrialproteindnajc11causesmotorneuronpathologyassociatedwithcristaedisorganizationandlymphoidabnormalitiesinmice
AT dounieleni splicingmutationinthenovelmitochondrialproteindnajc11causesmotorneuronpathologyassociatedwithcristaedisorganizationandlymphoidabnormalitiesinmice