Measuring acetyl-CoA and acetylated histone turnover in vivo: Effect of a high fat diet. 2021

Andrea Arias-Alvarado, and Mirjavid Aghayev, and Serguei Ilchenko, and Nadia Rachdaoui, and Josephine Lepp, and Tsung-Heng Tsai, and Guo-Fang Zhang, and Stephen Previs, and Takhar Kasumov
Department of Pharmaceutical Sciences, Northeast Ohio Medical University, Rootstown, OH, 44272, USA.

Cellular availability of acetyl-CoA, a central intermediate of metabolism, regulates histone acetylation. The impact of a high-fat diet (HFD) on the turnover rates of acetyl-CoA and acetylated histones is unknown. We developed a method for simultaneous measurement of acetyl-CoA and acetylated histones kinetics using a single 2H2O tracer, and used it to examine effect of HFD-induced perturbations on hepatic histone acetylation in LDLR-/- mice, a mouse model of non-alcoholic fatty liver disease (NAFLD). Mice were given 2H2O in the drinking water and the kinetics of hepatic acetyl-CoA, histones, and acetylated histones were quantified based on their 2H-labeling. Consumption of a high fat Western-diet (WD) for twelve weeks led to decreased acetylation of hepatic histones (p< 0.05), as compared to a control diet. These changes were associated with 1.5-3-fold increased turnover rates of histones without any change in acetyl-CoA flux. Acetylation significantly reduced the stability of histones and the turnover rates of acetylated peptides were correlated with the number of acetyl groups in neighboring lysine sites. We conclude that 2H2O-method can be used to study metabolically controlled histone acetylation and acetylated histone turnover in vivo.

UI MeSH Term Description Entries
D008099 Liver A large lobed glandular organ in the abdomen of vertebrates that is responsible for detoxification, metabolism, synthesis and storage of various substances. Livers
D008239 Lysine An essential amino acid. It is often added to animal feed. Enisyl,L-Lysine,Lysine Acetate,Lysine Hydrochloride,Acetate, Lysine,L Lysine
D008297 Male Males
D011499 Protein Processing, Post-Translational Any of various enzymatically catalyzed post-translational modifications of PEPTIDES or PROTEINS in the cell of origin. These modifications include carboxylation; HYDROXYLATION; ACETYLATION; PHOSPHORYLATION; METHYLATION; GLYCOSYLATION; ubiquitination; oxidation; proteolysis; and crosslinking and result in changes in molecular weight and electrophoretic motility. Amino Acid Modification, Post-Translational,Post-Translational Modification,Post-Translational Protein Modification,Posttranslational Modification,Protein Modification, Post-Translational,Amino Acid Modification, Posttranslational,Post-Translational Amino Acid Modification,Post-Translational Modifications,Post-Translational Protein Processing,Posttranslational Amino Acid Modification,Posttranslational Modifications,Posttranslational Protein Processing,Protein Processing, Post Translational,Protein Processing, Posttranslational,Amino Acid Modification, Post Translational,Modification, Post-Translational,Modification, Post-Translational Protein,Modification, Posttranslational,Modifications, Post-Translational,Modifications, Post-Translational Protein,Modifications, Posttranslational,Post Translational Amino Acid Modification,Post Translational Modification,Post Translational Modifications,Post Translational Protein Modification,Post Translational Protein Processing,Post-Translational Protein Modifications,Processing, Post-Translational Protein,Processing, Posttranslational Protein,Protein Modification, Post Translational,Protein Modifications, Post-Translational
D006657 Histones Small chromosomal proteins (approx 12-20 kD) possessing an open, unfolded structure and attached to the DNA in cell nuclei by ionic linkages. Classification into the various types (designated histone I, histone II, etc.) is based on the relative amounts of arginine and lysine in each. Histone,Histone H1,Histone H1(s),Histone H2a,Histone H2b,Histone H3,Histone H3.3,Histone H4,Histone H5,Histone H7
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000105 Acetyl Coenzyme A Acetyl CoA participates in the biosynthesis of fatty acids and sterols, in the oxidation of fatty acids and in the metabolism of many amino acids. It also acts as a biological acetylating agent. Acetyl CoA,Acetyl-CoA,CoA, Acetyl,Coenzyme A, Acetyl
D000107 Acetylation Formation of an acetyl derivative. (Stedman, 25th ed) Acetylations
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D013058 Mass Spectrometry An analytical method used in determining the identity of a chemical based on its mass using mass analyzers/mass spectrometers. Mass Spectroscopy,Spectrometry, Mass,Spectroscopy, Mass,Spectrum Analysis, Mass,Analysis, Mass Spectrum,Mass Spectrum Analysis,Analyses, Mass Spectrum,Mass Spectrum Analyses,Spectrum Analyses, Mass

Related Publications

Andrea Arias-Alvarado, and Mirjavid Aghayev, and Serguei Ilchenko, and Nadia Rachdaoui, and Josephine Lepp, and Tsung-Heng Tsai, and Guo-Fang Zhang, and Stephen Previs, and Takhar Kasumov
February 2017, The Journal of biological chemistry,
Andrea Arias-Alvarado, and Mirjavid Aghayev, and Serguei Ilchenko, and Nadia Rachdaoui, and Josephine Lepp, and Tsung-Heng Tsai, and Guo-Fang Zhang, and Stephen Previs, and Takhar Kasumov
August 1976, Biochemical and biophysical research communications,
Andrea Arias-Alvarado, and Mirjavid Aghayev, and Serguei Ilchenko, and Nadia Rachdaoui, and Josephine Lepp, and Tsung-Heng Tsai, and Guo-Fang Zhang, and Stephen Previs, and Takhar Kasumov
July 1987, The Journal of nutrition,
Andrea Arias-Alvarado, and Mirjavid Aghayev, and Serguei Ilchenko, and Nadia Rachdaoui, and Josephine Lepp, and Tsung-Heng Tsai, and Guo-Fang Zhang, and Stephen Previs, and Takhar Kasumov
June 1993, The Biochemical journal,
Andrea Arias-Alvarado, and Mirjavid Aghayev, and Serguei Ilchenko, and Nadia Rachdaoui, and Josephine Lepp, and Tsung-Heng Tsai, and Guo-Fang Zhang, and Stephen Previs, and Takhar Kasumov
October 2009, Diabetes, obesity & metabolism,
Andrea Arias-Alvarado, and Mirjavid Aghayev, and Serguei Ilchenko, and Nadia Rachdaoui, and Josephine Lepp, and Tsung-Heng Tsai, and Guo-Fang Zhang, and Stephen Previs, and Takhar Kasumov
July 2012, The Journal of biological chemistry,
Andrea Arias-Alvarado, and Mirjavid Aghayev, and Serguei Ilchenko, and Nadia Rachdaoui, and Josephine Lepp, and Tsung-Heng Tsai, and Guo-Fang Zhang, and Stephen Previs, and Takhar Kasumov
November 1978, The Journal of biological chemistry,
Andrea Arias-Alvarado, and Mirjavid Aghayev, and Serguei Ilchenko, and Nadia Rachdaoui, and Josephine Lepp, and Tsung-Heng Tsai, and Guo-Fang Zhang, and Stephen Previs, and Takhar Kasumov
March 1993, The Journal of biological chemistry,
Andrea Arias-Alvarado, and Mirjavid Aghayev, and Serguei Ilchenko, and Nadia Rachdaoui, and Josephine Lepp, and Tsung-Heng Tsai, and Guo-Fang Zhang, and Stephen Previs, and Takhar Kasumov
May 2003, Journal of biochemistry and molecular biology,
Andrea Arias-Alvarado, and Mirjavid Aghayev, and Serguei Ilchenko, and Nadia Rachdaoui, and Josephine Lepp, and Tsung-Heng Tsai, and Guo-Fang Zhang, and Stephen Previs, and Takhar Kasumov
December 1989, Biochemical Society transactions,
Copied contents to your clipboard!