Cargando…

UCP3 Regulates Cardiac Efficiency and Mitochondrial Coupling in High Fat–Fed Mice but Not in Leptin-Deficient Mice

These studies investigate the role of uncoupling protein 3 (UCP3) in cardiac energy metabolism, cardiac O(2) consumption (MVO(2)), cardiac efficiency (CE), and mitochondrial uncoupling in high fat (HF)–fed or leptin-deficient mice. UCP3KO and wild-type (WT) mice were fed normal chow or HF diets for...

Descripción completa

Detalles Bibliográficos
Autores principales: Boudina, Sihem, Han, Yong Hwan, Pei, Shaobo, Tidwell, Timothy J., Henrie, Brandon, Tuinei, Joseph, Olsen, Curtis, Sena, Sandra, Abel, E. Dale
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Diabetes Association 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3501860/
https://www.ncbi.nlm.nih.gov/pubmed/22912419
http://dx.doi.org/10.2337/db12-0063
_version_ 1782250232649613312
author Boudina, Sihem
Han, Yong Hwan
Pei, Shaobo
Tidwell, Timothy J.
Henrie, Brandon
Tuinei, Joseph
Olsen, Curtis
Sena, Sandra
Abel, E. Dale
author_facet Boudina, Sihem
Han, Yong Hwan
Pei, Shaobo
Tidwell, Timothy J.
Henrie, Brandon
Tuinei, Joseph
Olsen, Curtis
Sena, Sandra
Abel, E. Dale
author_sort Boudina, Sihem
collection PubMed
description These studies investigate the role of uncoupling protein 3 (UCP3) in cardiac energy metabolism, cardiac O(2) consumption (MVO(2)), cardiac efficiency (CE), and mitochondrial uncoupling in high fat (HF)–fed or leptin-deficient mice. UCP3KO and wild-type (WT) mice were fed normal chow or HF diets for 10 weeks. Substrate utilization rates, MVO(2), CE, and mitochondrial uncoupling were measured in perfused working hearts and saponin-permeabilized cardiac fibers, respectively. Similar analyses were performed in hearts of ob/ob mice lacking UCP3 (U3OB mice). HF increased cardiac UCP3 protein. However, fatty acid (FA) oxidation rates were similarly increased by HF diet in WT and UCP3KO mice. By contrast, MVO(2) increased in WT, but not in UCP3KO with HF, leading to increased CE in UCP3KO mice. Consistent with increased CE, mitochondrial coupling was increased in the hearts of HF-fed UCP3KO mice. Unexpectedly, UCP3 deletion in ob/ob mice reduced FA oxidation but had no effect on MVO(2) or CE. In addition, FA-induced mitochondrial uncoupling was similarly enhanced in U3OB compared with ob/ob hearts and was associated with elevated mitochondrial thioesterase-1 protein content. These studies show that although UCP3 may mediate mitochondrial uncoupling and reduced CE after HF feeding, it does not mediate uncoupling in leptin-deficient states.
format Online
Article
Text
id pubmed-3501860
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher American Diabetes Association
record_format MEDLINE/PubMed
spelling pubmed-35018602013-12-01 UCP3 Regulates Cardiac Efficiency and Mitochondrial Coupling in High Fat–Fed Mice but Not in Leptin-Deficient Mice Boudina, Sihem Han, Yong Hwan Pei, Shaobo Tidwell, Timothy J. Henrie, Brandon Tuinei, Joseph Olsen, Curtis Sena, Sandra Abel, E. Dale Diabetes Complications These studies investigate the role of uncoupling protein 3 (UCP3) in cardiac energy metabolism, cardiac O(2) consumption (MVO(2)), cardiac efficiency (CE), and mitochondrial uncoupling in high fat (HF)–fed or leptin-deficient mice. UCP3KO and wild-type (WT) mice were fed normal chow or HF diets for 10 weeks. Substrate utilization rates, MVO(2), CE, and mitochondrial uncoupling were measured in perfused working hearts and saponin-permeabilized cardiac fibers, respectively. Similar analyses were performed in hearts of ob/ob mice lacking UCP3 (U3OB mice). HF increased cardiac UCP3 protein. However, fatty acid (FA) oxidation rates were similarly increased by HF diet in WT and UCP3KO mice. By contrast, MVO(2) increased in WT, but not in UCP3KO with HF, leading to increased CE in UCP3KO mice. Consistent with increased CE, mitochondrial coupling was increased in the hearts of HF-fed UCP3KO mice. Unexpectedly, UCP3 deletion in ob/ob mice reduced FA oxidation but had no effect on MVO(2) or CE. In addition, FA-induced mitochondrial uncoupling was similarly enhanced in U3OB compared with ob/ob hearts and was associated with elevated mitochondrial thioesterase-1 protein content. These studies show that although UCP3 may mediate mitochondrial uncoupling and reduced CE after HF feeding, it does not mediate uncoupling in leptin-deficient states. American Diabetes Association 2012-12 2012-11-15 /pmc/articles/PMC3501860/ /pubmed/22912419 http://dx.doi.org/10.2337/db12-0063 Text en © 2012 by the American Diabetes Association. Readers may use this article as long as the work is properly cited, the use is educational and not for profit, and the work is not altered. See http://creativecommons.org/licenses/by-nc-nd/3.0/ for details.
spellingShingle Complications
Boudina, Sihem
Han, Yong Hwan
Pei, Shaobo
Tidwell, Timothy J.
Henrie, Brandon
Tuinei, Joseph
Olsen, Curtis
Sena, Sandra
Abel, E. Dale
UCP3 Regulates Cardiac Efficiency and Mitochondrial Coupling in High Fat–Fed Mice but Not in Leptin-Deficient Mice
title UCP3 Regulates Cardiac Efficiency and Mitochondrial Coupling in High Fat–Fed Mice but Not in Leptin-Deficient Mice
title_full UCP3 Regulates Cardiac Efficiency and Mitochondrial Coupling in High Fat–Fed Mice but Not in Leptin-Deficient Mice
title_fullStr UCP3 Regulates Cardiac Efficiency and Mitochondrial Coupling in High Fat–Fed Mice but Not in Leptin-Deficient Mice
title_full_unstemmed UCP3 Regulates Cardiac Efficiency and Mitochondrial Coupling in High Fat–Fed Mice but Not in Leptin-Deficient Mice
title_short UCP3 Regulates Cardiac Efficiency and Mitochondrial Coupling in High Fat–Fed Mice but Not in Leptin-Deficient Mice
title_sort ucp3 regulates cardiac efficiency and mitochondrial coupling in high fat–fed mice but not in leptin-deficient mice
topic Complications
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3501860/
https://www.ncbi.nlm.nih.gov/pubmed/22912419
http://dx.doi.org/10.2337/db12-0063
work_keys_str_mv AT boudinasihem ucp3regulatescardiacefficiencyandmitochondrialcouplinginhighfatfedmicebutnotinleptindeficientmice
AT hanyonghwan ucp3regulatescardiacefficiencyandmitochondrialcouplinginhighfatfedmicebutnotinleptindeficientmice
AT peishaobo ucp3regulatescardiacefficiencyandmitochondrialcouplinginhighfatfedmicebutnotinleptindeficientmice
AT tidwelltimothyj ucp3regulatescardiacefficiencyandmitochondrialcouplinginhighfatfedmicebutnotinleptindeficientmice
AT henriebrandon ucp3regulatescardiacefficiencyandmitochondrialcouplinginhighfatfedmicebutnotinleptindeficientmice
AT tuineijoseph ucp3regulatescardiacefficiencyandmitochondrialcouplinginhighfatfedmicebutnotinleptindeficientmice
AT olsencurtis ucp3regulatescardiacefficiencyandmitochondrialcouplinginhighfatfedmicebutnotinleptindeficientmice
AT senasandra ucp3regulatescardiacefficiencyandmitochondrialcouplinginhighfatfedmicebutnotinleptindeficientmice
AT abeledale ucp3regulatescardiacefficiencyandmitochondrialcouplinginhighfatfedmicebutnotinleptindeficientmice