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SIRT3 regulates fatty acid oxidation via reversible enzyme deacetylation

Sirtuins are NAD(+)-dependent protein deacetylases and mediate adaptive responses to a variety of stresses, including calorie restriction and metabolic stress. Sirtuin 3 (SIRT3) is localized in the mitochondrial matrix where it regulates the acetylation levels of metabolic enzymes, including acetyl...

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Autores principales: Hirschey, Matthew D., Shimazu, Tadahiro, Goetzman, Eric, Jing, Enxuan, Schwer, Bjoern, Lombard, David B., Grueter, Carrie A., Harris, Charles, Biddinger, Sudha, Ilkayeva, Olga R., Stevens, Robert D., Li, Yu, Saha, Asish K., Ruderman, Neil B., Bain, James R., Newgard, Christopher B., Farese, Robert V., Alt, Frederick W., Kahn, C. Ronald, Verdin, Eric
Formato: Texto
Lenguaje:English
Publicado: 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2841477/
https://www.ncbi.nlm.nih.gov/pubmed/20203611
http://dx.doi.org/10.1038/nature08778
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author Hirschey, Matthew D.
Shimazu, Tadahiro
Goetzman, Eric
Jing, Enxuan
Schwer, Bjoern
Lombard, David B.
Grueter, Carrie A.
Harris, Charles
Biddinger, Sudha
Ilkayeva, Olga R.
Stevens, Robert D.
Li, Yu
Saha, Asish K.
Ruderman, Neil B.
Bain, James R.
Newgard, Christopher B.
Farese, Robert V.
Alt, Frederick W.
Kahn, C. Ronald
Verdin, Eric
author_facet Hirschey, Matthew D.
Shimazu, Tadahiro
Goetzman, Eric
Jing, Enxuan
Schwer, Bjoern
Lombard, David B.
Grueter, Carrie A.
Harris, Charles
Biddinger, Sudha
Ilkayeva, Olga R.
Stevens, Robert D.
Li, Yu
Saha, Asish K.
Ruderman, Neil B.
Bain, James R.
Newgard, Christopher B.
Farese, Robert V.
Alt, Frederick W.
Kahn, C. Ronald
Verdin, Eric
author_sort Hirschey, Matthew D.
collection PubMed
description Sirtuins are NAD(+)-dependent protein deacetylases and mediate adaptive responses to a variety of stresses, including calorie restriction and metabolic stress. Sirtuin 3 (SIRT3) is localized in the mitochondrial matrix where it regulates the acetylation levels of metabolic enzymes, including acetyl coenzyme A synthetase 21,2. Mice lacking both SIRT3 alleles appear phenotypically normal under basal conditions, but show marked hyperacetylation of several mitochondrial proteins3. We report that SIRT3 expression is upregulated during fasting in liver and brown adipose tissues. Livers from mice lacking SIRT3 show higher levels of fatty acid oxidation intermediate products and triglycerides during fasting associated with decreased levels of fatty acid oxidation when compared to wild-type mice. Mass spectrometry analysis of mitochondrial proteins shows that long-chain acyl CoA dehydrogenase (LCAD) is hyperacetylated at lysine 42 in the absence of SIRT3. LCAD is deacetylated in wild-type mice under fasted conditions and by SIRT3 in vitro and in vivo, and hyperacetylation of LCAD reduces its enzymatic activity. Mice lacking SIRT3 exhibit hallmarks of fatty acid oxidation disorders during fasting including reduced ATP levels and intolerance to cold exposure. These findings identify acetylation as a novel regulatory mechanism for mitochondrial fatty acid oxidation and demonstrate that SIRT3 modulates mitochondrial intermediary metabolism and fatty acid utilization during fasting.
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spelling pubmed-28414772010-09-04 SIRT3 regulates fatty acid oxidation via reversible enzyme deacetylation Hirschey, Matthew D. Shimazu, Tadahiro Goetzman, Eric Jing, Enxuan Schwer, Bjoern Lombard, David B. Grueter, Carrie A. Harris, Charles Biddinger, Sudha Ilkayeva, Olga R. Stevens, Robert D. Li, Yu Saha, Asish K. Ruderman, Neil B. Bain, James R. Newgard, Christopher B. Farese, Robert V. Alt, Frederick W. Kahn, C. Ronald Verdin, Eric Nature Article Sirtuins are NAD(+)-dependent protein deacetylases and mediate adaptive responses to a variety of stresses, including calorie restriction and metabolic stress. Sirtuin 3 (SIRT3) is localized in the mitochondrial matrix where it regulates the acetylation levels of metabolic enzymes, including acetyl coenzyme A synthetase 21,2. Mice lacking both SIRT3 alleles appear phenotypically normal under basal conditions, but show marked hyperacetylation of several mitochondrial proteins3. We report that SIRT3 expression is upregulated during fasting in liver and brown adipose tissues. Livers from mice lacking SIRT3 show higher levels of fatty acid oxidation intermediate products and triglycerides during fasting associated with decreased levels of fatty acid oxidation when compared to wild-type mice. Mass spectrometry analysis of mitochondrial proteins shows that long-chain acyl CoA dehydrogenase (LCAD) is hyperacetylated at lysine 42 in the absence of SIRT3. LCAD is deacetylated in wild-type mice under fasted conditions and by SIRT3 in vitro and in vivo, and hyperacetylation of LCAD reduces its enzymatic activity. Mice lacking SIRT3 exhibit hallmarks of fatty acid oxidation disorders during fasting including reduced ATP levels and intolerance to cold exposure. These findings identify acetylation as a novel regulatory mechanism for mitochondrial fatty acid oxidation and demonstrate that SIRT3 modulates mitochondrial intermediary metabolism and fatty acid utilization during fasting. 2010-03-04 /pmc/articles/PMC2841477/ /pubmed/20203611 http://dx.doi.org/10.1038/nature08778 Text en Users may view, print, copy, download and text and data- mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Hirschey, Matthew D.
Shimazu, Tadahiro
Goetzman, Eric
Jing, Enxuan
Schwer, Bjoern
Lombard, David B.
Grueter, Carrie A.
Harris, Charles
Biddinger, Sudha
Ilkayeva, Olga R.
Stevens, Robert D.
Li, Yu
Saha, Asish K.
Ruderman, Neil B.
Bain, James R.
Newgard, Christopher B.
Farese, Robert V.
Alt, Frederick W.
Kahn, C. Ronald
Verdin, Eric
SIRT3 regulates fatty acid oxidation via reversible enzyme deacetylation
title SIRT3 regulates fatty acid oxidation via reversible enzyme deacetylation
title_full SIRT3 regulates fatty acid oxidation via reversible enzyme deacetylation
title_fullStr SIRT3 regulates fatty acid oxidation via reversible enzyme deacetylation
title_full_unstemmed SIRT3 regulates fatty acid oxidation via reversible enzyme deacetylation
title_short SIRT3 regulates fatty acid oxidation via reversible enzyme deacetylation
title_sort sirt3 regulates fatty acid oxidation via reversible enzyme deacetylation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2841477/
https://www.ncbi.nlm.nih.gov/pubmed/20203611
http://dx.doi.org/10.1038/nature08778
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