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Human Mitochondrial DNA-Protein Complexes Attach to a Cholesterol-Rich Membrane Structure

The helicase Twinkle is indispensable for mtDNA replication in nucleoids. Previously, we showed that Twinkle is tightly membrane-associated even in the absence of mtDNA, which suggests that Twinkle is part of a membrane-attached replication platform. Here we show that this platform is a cholesterol-...

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Autores principales: Gerhold, Joachim M., Cansiz-Arda, Şirin, Lõhmus, Madis, Engberg, Oskar, Reyes, Aurelio, van Rennes, Helga, Sanz, Alberto, Holt, Ian J., Cooper, Helen M., Spelbrink, Johannes N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4609938/
https://www.ncbi.nlm.nih.gov/pubmed/26478270
http://dx.doi.org/10.1038/srep15292
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author Gerhold, Joachim M.
Cansiz-Arda, Şirin
Lõhmus, Madis
Engberg, Oskar
Reyes, Aurelio
van Rennes, Helga
Sanz, Alberto
Holt, Ian J.
Cooper, Helen M.
Spelbrink, Johannes N.
author_facet Gerhold, Joachim M.
Cansiz-Arda, Şirin
Lõhmus, Madis
Engberg, Oskar
Reyes, Aurelio
van Rennes, Helga
Sanz, Alberto
Holt, Ian J.
Cooper, Helen M.
Spelbrink, Johannes N.
author_sort Gerhold, Joachim M.
collection PubMed
description The helicase Twinkle is indispensable for mtDNA replication in nucleoids. Previously, we showed that Twinkle is tightly membrane-associated even in the absence of mtDNA, which suggests that Twinkle is part of a membrane-attached replication platform. Here we show that this platform is a cholesterol-rich membrane structure. We fractionated mitochondrial membrane preparations on flotation gradients and show that membrane-associated nucleoids accumulate at the top of the gradient. This fraction was shown to be highly enriched in cholesterol, a lipid that is otherwise low abundant in mitochondria. In contrast, more common mitochondrial lipids, and abundant inner-membrane associated proteins concentrated in the bottom-half of these gradients. Gene silencing of ATAD3, a protein with proposed functions related to nucleoid and mitochondrial cholesterol homeostasis, modified the distribution of cholesterol and nucleoids in the gradient in an identical fashion. Both cholesterol and ATAD3 were previously shown to be enriched in ER-mitochondrial junctions, and we detect nucleoid components in biochemical isolates of these structures. Our data suggest an uncommon membrane composition that accommodates platforms for replicating mtDNA, and reconcile apparently disparate functions of ATAD3. We suggest that mtDNA replication platforms are organized in connection with ER-mitochondrial junctions, facilitated by a specialized membrane architecture involving mitochondrial cholesterol.
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spelling pubmed-46099382015-10-29 Human Mitochondrial DNA-Protein Complexes Attach to a Cholesterol-Rich Membrane Structure Gerhold, Joachim M. Cansiz-Arda, Şirin Lõhmus, Madis Engberg, Oskar Reyes, Aurelio van Rennes, Helga Sanz, Alberto Holt, Ian J. Cooper, Helen M. Spelbrink, Johannes N. Sci Rep Article The helicase Twinkle is indispensable for mtDNA replication in nucleoids. Previously, we showed that Twinkle is tightly membrane-associated even in the absence of mtDNA, which suggests that Twinkle is part of a membrane-attached replication platform. Here we show that this platform is a cholesterol-rich membrane structure. We fractionated mitochondrial membrane preparations on flotation gradients and show that membrane-associated nucleoids accumulate at the top of the gradient. This fraction was shown to be highly enriched in cholesterol, a lipid that is otherwise low abundant in mitochondria. In contrast, more common mitochondrial lipids, and abundant inner-membrane associated proteins concentrated in the bottom-half of these gradients. Gene silencing of ATAD3, a protein with proposed functions related to nucleoid and mitochondrial cholesterol homeostasis, modified the distribution of cholesterol and nucleoids in the gradient in an identical fashion. Both cholesterol and ATAD3 were previously shown to be enriched in ER-mitochondrial junctions, and we detect nucleoid components in biochemical isolates of these structures. Our data suggest an uncommon membrane composition that accommodates platforms for replicating mtDNA, and reconcile apparently disparate functions of ATAD3. We suggest that mtDNA replication platforms are organized in connection with ER-mitochondrial junctions, facilitated by a specialized membrane architecture involving mitochondrial cholesterol. Nature Publishing Group 2015-10-19 /pmc/articles/PMC4609938/ /pubmed/26478270 http://dx.doi.org/10.1038/srep15292 Text en Copyright © 2015, Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Gerhold, Joachim M.
Cansiz-Arda, Şirin
Lõhmus, Madis
Engberg, Oskar
Reyes, Aurelio
van Rennes, Helga
Sanz, Alberto
Holt, Ian J.
Cooper, Helen M.
Spelbrink, Johannes N.
Human Mitochondrial DNA-Protein Complexes Attach to a Cholesterol-Rich Membrane Structure
title Human Mitochondrial DNA-Protein Complexes Attach to a Cholesterol-Rich Membrane Structure
title_full Human Mitochondrial DNA-Protein Complexes Attach to a Cholesterol-Rich Membrane Structure
title_fullStr Human Mitochondrial DNA-Protein Complexes Attach to a Cholesterol-Rich Membrane Structure
title_full_unstemmed Human Mitochondrial DNA-Protein Complexes Attach to a Cholesterol-Rich Membrane Structure
title_short Human Mitochondrial DNA-Protein Complexes Attach to a Cholesterol-Rich Membrane Structure
title_sort human mitochondrial dna-protein complexes attach to a cholesterol-rich membrane structure
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4609938/
https://www.ncbi.nlm.nih.gov/pubmed/26478270
http://dx.doi.org/10.1038/srep15292
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