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Linear mtDNA fragments and unusual mtDNA rearrangements associated with pathological deficiency of MGME1 exonuclease

MGME1, also known as Ddk1 or C20orf72, is a mitochondrial exonuclease found to be involved in the processing of mitochondrial DNA (mtDNA) during replication. Here, we present detailed insights on the role of MGME1 in mtDNA maintenance. Upon loss of MGME1, elongated 7S DNA species accumulate owing to...

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Autores principales: Nicholls, Thomas J., Zsurka, Gábor, Peeva, Viktoriya, Schöler, Susanne, Szczesny, Roman J., Cysewski, Dominik, Reyes, Aurelio, Kornblum, Cornelia, Sciacco, Monica, Moggio, Maurizio, Dziembowski, Andrzej, Kunz, Wolfram S., Minczuk, Michal
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4222359/
https://www.ncbi.nlm.nih.gov/pubmed/24986917
http://dx.doi.org/10.1093/hmg/ddu336
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author Nicholls, Thomas J.
Zsurka, Gábor
Peeva, Viktoriya
Schöler, Susanne
Szczesny, Roman J.
Cysewski, Dominik
Reyes, Aurelio
Kornblum, Cornelia
Sciacco, Monica
Moggio, Maurizio
Dziembowski, Andrzej
Kunz, Wolfram S.
Minczuk, Michal
author_facet Nicholls, Thomas J.
Zsurka, Gábor
Peeva, Viktoriya
Schöler, Susanne
Szczesny, Roman J.
Cysewski, Dominik
Reyes, Aurelio
Kornblum, Cornelia
Sciacco, Monica
Moggio, Maurizio
Dziembowski, Andrzej
Kunz, Wolfram S.
Minczuk, Michal
author_sort Nicholls, Thomas J.
collection PubMed
description MGME1, also known as Ddk1 or C20orf72, is a mitochondrial exonuclease found to be involved in the processing of mitochondrial DNA (mtDNA) during replication. Here, we present detailed insights on the role of MGME1 in mtDNA maintenance. Upon loss of MGME1, elongated 7S DNA species accumulate owing to incomplete processing of 5′ ends. Moreover, an 11-kb linear mtDNA fragment spanning the entire major arc of the mitochondrial genome is generated. In contrast to control cells, where linear mtDNA molecules are detectable only after nuclease S1 treatment, the 11-kb fragment persists in MGME1-deficient cells. In parallel, we observed characteristic mtDNA duplications in the absence of MGME1. The fact that the breakpoints of these mtDNA rearrangements do not correspond to either classical deletions or the ends of the linear 11-kb fragment points to a role of MGME1 in processing mtDNA ends, possibly enabling their repair by homologous recombination. In agreement with its functional involvement in mtDNA maintenance, we show that MGME1 interacts with the mitochondrial replicase PolgA, suggesting that it is a constituent of the mitochondrial replisome, to which it provides an additional exonuclease activity. Thus, our results support the viewpoint that MGME1-mediated mtDNA processing is essential for faithful mitochondrial genome replication and might be required for intramolecular recombination of mtDNA.
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spelling pubmed-42223592014-11-10 Linear mtDNA fragments and unusual mtDNA rearrangements associated with pathological deficiency of MGME1 exonuclease Nicholls, Thomas J. Zsurka, Gábor Peeva, Viktoriya Schöler, Susanne Szczesny, Roman J. Cysewski, Dominik Reyes, Aurelio Kornblum, Cornelia Sciacco, Monica Moggio, Maurizio Dziembowski, Andrzej Kunz, Wolfram S. Minczuk, Michal Hum Mol Genet Articles MGME1, also known as Ddk1 or C20orf72, is a mitochondrial exonuclease found to be involved in the processing of mitochondrial DNA (mtDNA) during replication. Here, we present detailed insights on the role of MGME1 in mtDNA maintenance. Upon loss of MGME1, elongated 7S DNA species accumulate owing to incomplete processing of 5′ ends. Moreover, an 11-kb linear mtDNA fragment spanning the entire major arc of the mitochondrial genome is generated. In contrast to control cells, where linear mtDNA molecules are detectable only after nuclease S1 treatment, the 11-kb fragment persists in MGME1-deficient cells. In parallel, we observed characteristic mtDNA duplications in the absence of MGME1. The fact that the breakpoints of these mtDNA rearrangements do not correspond to either classical deletions or the ends of the linear 11-kb fragment points to a role of MGME1 in processing mtDNA ends, possibly enabling their repair by homologous recombination. In agreement with its functional involvement in mtDNA maintenance, we show that MGME1 interacts with the mitochondrial replicase PolgA, suggesting that it is a constituent of the mitochondrial replisome, to which it provides an additional exonuclease activity. Thus, our results support the viewpoint that MGME1-mediated mtDNA processing is essential for faithful mitochondrial genome replication and might be required for intramolecular recombination of mtDNA. Oxford University Press 2014-12-01 2014-06-30 /pmc/articles/PMC4222359/ /pubmed/24986917 http://dx.doi.org/10.1093/hmg/ddu336 Text en © The Author 2014. Published by Oxford University Press http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Nicholls, Thomas J.
Zsurka, Gábor
Peeva, Viktoriya
Schöler, Susanne
Szczesny, Roman J.
Cysewski, Dominik
Reyes, Aurelio
Kornblum, Cornelia
Sciacco, Monica
Moggio, Maurizio
Dziembowski, Andrzej
Kunz, Wolfram S.
Minczuk, Michal
Linear mtDNA fragments and unusual mtDNA rearrangements associated with pathological deficiency of MGME1 exonuclease
title Linear mtDNA fragments and unusual mtDNA rearrangements associated with pathological deficiency of MGME1 exonuclease
title_full Linear mtDNA fragments and unusual mtDNA rearrangements associated with pathological deficiency of MGME1 exonuclease
title_fullStr Linear mtDNA fragments and unusual mtDNA rearrangements associated with pathological deficiency of MGME1 exonuclease
title_full_unstemmed Linear mtDNA fragments and unusual mtDNA rearrangements associated with pathological deficiency of MGME1 exonuclease
title_short Linear mtDNA fragments and unusual mtDNA rearrangements associated with pathological deficiency of MGME1 exonuclease
title_sort linear mtdna fragments and unusual mtdna rearrangements associated with pathological deficiency of mgme1 exonuclease
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4222359/
https://www.ncbi.nlm.nih.gov/pubmed/24986917
http://dx.doi.org/10.1093/hmg/ddu336
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