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Difference between revisions of "Peyta 2016 Biochim Biophys Acta"

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{{Publication
{{Publication
|title=Peyta L, Jarnouen K, Pinault M, Guimaraes C, Pais de Barros JP, Chevalier S, Dumas JF, Maillot F, Hatch GM, Loyer P, Servais S (2016) Reduced cardiolipin content decreases respiratory chain capacities and increases ATP synthesis yield in the human HepaRG cells. Biochim Biophys Acta 1857:443-53. Β 
|title=Peyta L, Jarnouen K, Pinault M, Guimaraes C, Pais de Barros JP, Chevalier S, Dumas JF, Maillot F, Hatch GM, Loyer P, Servais S (2016) Reduced cardiolipin content decreases respiratory chain capacities and increases ATP synthesis yield in the human HepaRG cells. Biochim Biophys Acta 1857:443-53.
|info=[http://www.ncbi.nlm.nih.gov/pubmed/26768115 PMID: 26768115]
|info=[http://www.ncbi.nlm.nih.gov/pubmed/26768115 PMID: 26768115]
|authors=Peyta L, Jarnouen K, Pinault M, Guimaraes C, Pais de Barros JP, Chevalier S, Dumas JF, Maillot F, Hatch GM, Loyer P, Servais S
|authors=Peyta L, Jarnouen K, Pinault M, Guimaraes C, Pais de Barros JP, Chevalier S, Dumas JF, Maillot F, Hatch GM, Loyer P, Servais S
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Copyright Β© 2016 Elsevier B.V. All rights reserved.
Copyright Β© 2016 Elsevier B.V. All rights reserved.
|keywords=Cardiolipin synthase, Hepatocytes, Mitochondrial network, Oxidative phosphorylation, Supercomplexes
|keywords=Cardiolipin synthase, Hepatocytes, Mitochondrial network, Oxidative phosphorylation, Supercomplexes, Human HepaRG cells, HuH-7 liver carcinoma cells, Human primary hepatocytes
}}
}}
{{Labeling
{{Labeling
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|enzymes=Supercomplex
|enzymes=Supercomplex
|topics=ATP production, Oxygen kinetics
|topics=ATP production, Oxygen kinetics
|couplingstates=ROUTINE, OXPHOS, ETS
|couplingstates=LEAK, OXPHOS, ETS
|substratestates=CI, CIV, CI&II, Other combinations, ROX
|substratestates=CI, CIV, CI&II, ROX
|instruments=Oxygraph-2k
|instruments=Oxygraph-2k
|additional=Labels, 2016-07
|additional=2016-07
}}
}}

Revision as of 13:41, 24 August 2016

Publications in the MiPMap
Peyta L, Jarnouen K, Pinault M, Guimaraes C, Pais de Barros JP, Chevalier S, Dumas JF, Maillot F, Hatch GM, Loyer P, Servais S (2016) Reduced cardiolipin content decreases respiratory chain capacities and increases ATP synthesis yield in the human HepaRG cells. Biochim Biophys Acta 1857:443-53.

Β» PMID: 26768115

Peyta L, Jarnouen K, Pinault M, Guimaraes C, Pais de Barros JP, Chevalier S, Dumas JF, Maillot F, Hatch GM, Loyer P, Servais S (2016) Biochim Biophys Acta

Abstract: Cardiolipin (CL) is a unique mitochondrial phospholipid potentially affecting many aspects of mitochondrial function/processes, i.e. energy production through oxidative phosphorylation. Most data focusing on implication of CL content and mitochondrial bioenergetics were performed in yeast or in cellular models of Barth syndrome. Previous work reported that increase in CL content leads to decrease in liver mitochondrial ATP synthesis yield. Therefore the aim of this study was to determine the effects of moderate decrease in CL content on mitochondrial bioenergetics in human hepatocytes. For this purpose, we generated a cardiolipin synthase knockdown (shCLS) in HepaRG hepatoma cells showing bioenergetics features similar to primary human hepatocytes. shCLS cells exhibited a 55% reduction in CLS gene and a 40% decrease in protein expression resulting in a 45% lower content in CL compared to control (shCTL) cells. Oxygen consumption was significantly reduced in shCLS cells compared to shCTL regardless of substrate used and energy state analyzed. Mitochondrial low molecular weight supercomplex content was higher in shCLS cells (+60%) compared to shCTL. Significant fragmentation of the mitochondrial network was observed in shCLS cells compared to shCTL cells. Surprisingly, mitochondrial ATP synthesis was unchanged in shCLS compared to shCTL cells but exhibited a higher ATP:O ratio (+46%) in shCLS cells. Our results suggest that lowered respiratory chain activity induced by moderate reduction in CL content may be due to both destabilization of supercomplexes and mitochondrial network fragmentation. In addition, CL content may regulate mitochondrial ATP synthesis yield.

Copyright Β© 2016 Elsevier B.V. All rights reserved. β€’ Keywords: Cardiolipin synthase, Hepatocytes, Mitochondrial network, Oxidative phosphorylation, Supercomplexes, Human HepaRG cells, HuH-7 liver carcinoma cells, Human primary hepatocytes


Labels: MiParea: Respiration, Genetic knockout;overexpression 


Organism: Human  Tissue;cell: Liver  Preparation: Permeabilized cells  Enzyme: Supercomplex  Regulation: ATP production, Oxygen kinetics  Coupling state: LEAK, OXPHOS, ETS"ETS" is not in the list (LEAK, ROUTINE, OXPHOS, ET) of allowed values for the "Coupling states" property. 

HRR: Oxygraph-2k 

2016-07