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High Molecular Weight Forms of Mammalian Respiratory Chain Complex II

Mitochondrial respiratory chain is organised into supramolecular structures that can be preserved in mild detergent solubilisates and resolved by native electrophoretic systems. Supercomplexes of respiratory complexes I, III and IV as well as multimeric forms of ATP synthase are well established. Ho...

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Autores principales: Kovářová, Nikola, Mráček, Tomáš, Nůsková, Hana, Holzerová, Eliška, Vrbacký, Marek, Pecina, Petr, Hejzlarová, Kateřina, Kľučková, Katarína, Rohlena, Jakub, Neuzil, Jiri, Houštěk, Josef
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3742469/
https://www.ncbi.nlm.nih.gov/pubmed/23967256
http://dx.doi.org/10.1371/journal.pone.0071869
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author Kovářová, Nikola
Mráček, Tomáš
Nůsková, Hana
Holzerová, Eliška
Vrbacký, Marek
Pecina, Petr
Hejzlarová, Kateřina
Kľučková, Katarína
Rohlena, Jakub
Neuzil, Jiri
Houštěk, Josef
author_facet Kovářová, Nikola
Mráček, Tomáš
Nůsková, Hana
Holzerová, Eliška
Vrbacký, Marek
Pecina, Petr
Hejzlarová, Kateřina
Kľučková, Katarína
Rohlena, Jakub
Neuzil, Jiri
Houštěk, Josef
author_sort Kovářová, Nikola
collection PubMed
description Mitochondrial respiratory chain is organised into supramolecular structures that can be preserved in mild detergent solubilisates and resolved by native electrophoretic systems. Supercomplexes of respiratory complexes I, III and IV as well as multimeric forms of ATP synthase are well established. However, the involvement of complex II, linking respiratory chain with tricarboxylic acid cycle, in mitochondrial supercomplexes is questionable. Here we show that digitonin-solubilised complex II quantitatively forms high molecular weight structures (CII(hmw)) that can be resolved by clear native electrophoresis. CII(hmw) structures are enzymatically active and differ in electrophoretic mobility between tissues (500 – over 1000 kDa) and cultured cells (400–670 kDa). While their formation is unaffected by isolated defects in other respiratory chain complexes, they are destabilised in mtDNA-depleted, rho0 cells. Molecular interactions responsible for the assembly of CII(hmw) are rather weak with the complexes being more stable in tissues than in cultured cells. While electrophoretic studies and immunoprecipitation experiments of CII(hmw) do not indicate specific interactions with the respiratory chain complexes I, III or IV or enzymes of the tricarboxylic acid cycle, they point out to a specific interaction between CII and ATP synthase.
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spelling pubmed-37424692013-08-21 High Molecular Weight Forms of Mammalian Respiratory Chain Complex II Kovářová, Nikola Mráček, Tomáš Nůsková, Hana Holzerová, Eliška Vrbacký, Marek Pecina, Petr Hejzlarová, Kateřina Kľučková, Katarína Rohlena, Jakub Neuzil, Jiri Houštěk, Josef PLoS One Research Article Mitochondrial respiratory chain is organised into supramolecular structures that can be preserved in mild detergent solubilisates and resolved by native electrophoretic systems. Supercomplexes of respiratory complexes I, III and IV as well as multimeric forms of ATP synthase are well established. However, the involvement of complex II, linking respiratory chain with tricarboxylic acid cycle, in mitochondrial supercomplexes is questionable. Here we show that digitonin-solubilised complex II quantitatively forms high molecular weight structures (CII(hmw)) that can be resolved by clear native electrophoresis. CII(hmw) structures are enzymatically active and differ in electrophoretic mobility between tissues (500 – over 1000 kDa) and cultured cells (400–670 kDa). While their formation is unaffected by isolated defects in other respiratory chain complexes, they are destabilised in mtDNA-depleted, rho0 cells. Molecular interactions responsible for the assembly of CII(hmw) are rather weak with the complexes being more stable in tissues than in cultured cells. While electrophoretic studies and immunoprecipitation experiments of CII(hmw) do not indicate specific interactions with the respiratory chain complexes I, III or IV or enzymes of the tricarboxylic acid cycle, they point out to a specific interaction between CII and ATP synthase. Public Library of Science 2013-08-13 /pmc/articles/PMC3742469/ /pubmed/23967256 http://dx.doi.org/10.1371/journal.pone.0071869 Text en © 2013 Kovářová 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
Kovářová, Nikola
Mráček, Tomáš
Nůsková, Hana
Holzerová, Eliška
Vrbacký, Marek
Pecina, Petr
Hejzlarová, Kateřina
Kľučková, Katarína
Rohlena, Jakub
Neuzil, Jiri
Houštěk, Josef
High Molecular Weight Forms of Mammalian Respiratory Chain Complex II
title High Molecular Weight Forms of Mammalian Respiratory Chain Complex II
title_full High Molecular Weight Forms of Mammalian Respiratory Chain Complex II
title_fullStr High Molecular Weight Forms of Mammalian Respiratory Chain Complex II
title_full_unstemmed High Molecular Weight Forms of Mammalian Respiratory Chain Complex II
title_short High Molecular Weight Forms of Mammalian Respiratory Chain Complex II
title_sort high molecular weight forms of mammalian respiratory chain complex ii
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3742469/
https://www.ncbi.nlm.nih.gov/pubmed/23967256
http://dx.doi.org/10.1371/journal.pone.0071869
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