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Developmental and Pathological Changes in the Human Cardiac Muscle Mitochondrial DNA Organization, Replication and Copy Number

Adult human heart mitochondrial DNA (mtDNA) has recently been shown to have a complex organization with abundant dimeric molecules, branched structures and four-way junctions. In order to understand the physiological significance of the heart-specific mtDNA maintenance mode and to find conditions th...

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Autores principales: Pohjoismäki, Jaakko L. O., Goffart, Steffi, Taylor, Robert W., Turnbull, Douglas M., Suomalainen, Anu, Jacobs, Howard T., Karhunen, Pekka J.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2862702/
https://www.ncbi.nlm.nih.gov/pubmed/20454654
http://dx.doi.org/10.1371/journal.pone.0010426
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author Pohjoismäki, Jaakko L. O.
Goffart, Steffi
Taylor, Robert W.
Turnbull, Douglas M.
Suomalainen, Anu
Jacobs, Howard T.
Karhunen, Pekka J.
author_facet Pohjoismäki, Jaakko L. O.
Goffart, Steffi
Taylor, Robert W.
Turnbull, Douglas M.
Suomalainen, Anu
Jacobs, Howard T.
Karhunen, Pekka J.
author_sort Pohjoismäki, Jaakko L. O.
collection PubMed
description Adult human heart mitochondrial DNA (mtDNA) has recently been shown to have a complex organization with abundant dimeric molecules, branched structures and four-way junctions. In order to understand the physiological significance of the heart-specific mtDNA maintenance mode and to find conditions that modify human heart mtDNA structure and replication, we analyzed healthy human heart of various ages as well as several different heart diseases, including ischemic heart disease, dilated as well as hypertrophic cardiomyopathies, and several mitochondrial disorders. By using one- and two-dimensional agarose gel electrophoresis, various enzymatic treatments and quantitative PCR we found that in human newborns heart mtDNA has a simple organization, lacking junctional forms and dimers. The adult-type branched forms are acquired in the early childhood, correlating with an increase in mtDNA copy number. Mitochondrial disorders involving either mutations in the mtDNA polymerase γ (PolGα) or mtDNA helicase Twinkle, while having no obvious cardiac manifestation, show distinct mtDNA maintenance phenotypes, which are not seen in various types of diseased heart or in mitochondrial disorders caused by point mutations or large-scale deletions of mtDNA. The findings suggest a link between cardiac muscle development, mtDNA copy number, replication mode and topological organization. Additionally, we show that Twinkle might have a direct role in the maintenance of four-way junctions in human heart mtDNA.
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spelling pubmed-28627022010-05-07 Developmental and Pathological Changes in the Human Cardiac Muscle Mitochondrial DNA Organization, Replication and Copy Number Pohjoismäki, Jaakko L. O. Goffart, Steffi Taylor, Robert W. Turnbull, Douglas M. Suomalainen, Anu Jacobs, Howard T. Karhunen, Pekka J. PLoS One Research Article Adult human heart mitochondrial DNA (mtDNA) has recently been shown to have a complex organization with abundant dimeric molecules, branched structures and four-way junctions. In order to understand the physiological significance of the heart-specific mtDNA maintenance mode and to find conditions that modify human heart mtDNA structure and replication, we analyzed healthy human heart of various ages as well as several different heart diseases, including ischemic heart disease, dilated as well as hypertrophic cardiomyopathies, and several mitochondrial disorders. By using one- and two-dimensional agarose gel electrophoresis, various enzymatic treatments and quantitative PCR we found that in human newborns heart mtDNA has a simple organization, lacking junctional forms and dimers. The adult-type branched forms are acquired in the early childhood, correlating with an increase in mtDNA copy number. Mitochondrial disorders involving either mutations in the mtDNA polymerase γ (PolGα) or mtDNA helicase Twinkle, while having no obvious cardiac manifestation, show distinct mtDNA maintenance phenotypes, which are not seen in various types of diseased heart or in mitochondrial disorders caused by point mutations or large-scale deletions of mtDNA. The findings suggest a link between cardiac muscle development, mtDNA copy number, replication mode and topological organization. Additionally, we show that Twinkle might have a direct role in the maintenance of four-way junctions in human heart mtDNA. Public Library of Science 2010-05-03 /pmc/articles/PMC2862702/ /pubmed/20454654 http://dx.doi.org/10.1371/journal.pone.0010426 Text en This is an open-access article distributed under the terms of the Creative Commons Public Domain declaration which stipulates that, once placed in the public domain, this work may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose. https://creativecommons.org/publicdomain/zero/1.0/ This is an open-access article distributed under the terms of the Creative Commons Public Domain declaration, which stipulates that, once placed in the public domain, this work may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose.
spellingShingle Research Article
Pohjoismäki, Jaakko L. O.
Goffart, Steffi
Taylor, Robert W.
Turnbull, Douglas M.
Suomalainen, Anu
Jacobs, Howard T.
Karhunen, Pekka J.
Developmental and Pathological Changes in the Human Cardiac Muscle Mitochondrial DNA Organization, Replication and Copy Number
title Developmental and Pathological Changes in the Human Cardiac Muscle Mitochondrial DNA Organization, Replication and Copy Number
title_full Developmental and Pathological Changes in the Human Cardiac Muscle Mitochondrial DNA Organization, Replication and Copy Number
title_fullStr Developmental and Pathological Changes in the Human Cardiac Muscle Mitochondrial DNA Organization, Replication and Copy Number
title_full_unstemmed Developmental and Pathological Changes in the Human Cardiac Muscle Mitochondrial DNA Organization, Replication and Copy Number
title_short Developmental and Pathological Changes in the Human Cardiac Muscle Mitochondrial DNA Organization, Replication and Copy Number
title_sort developmental and pathological changes in the human cardiac muscle mitochondrial dna organization, replication and copy number
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2862702/
https://www.ncbi.nlm.nih.gov/pubmed/20454654
http://dx.doi.org/10.1371/journal.pone.0010426
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