| Literature DB >> 28329008 |
Shilpa R Nagarajan1, Amanda E Brandon2,3, Jessie A McKenna4,5, Harrison C Shtein1, Thinh Q Nguyen1, Eurwin Suryana2, Philip Poronnik1, Gregory J Cooney2,3, Darren N Saunders4,5, Andrew J Hoy1.
Abstract
Ubiquitin is a crucial post-translational modification regulating numerous cellular processes, but its role in metabolic disease is not well characterized. In this study, we identified the in vivo ubiquitin-modified proteome in rat liver and determined changes in this ubiquitome under acute insulin stimulation and high-fat and sucrose diet-induced insulin resistance. We identified 1267 ubiquitinated proteins in rat liver across diet and insulin-stimulated conditions, with 882 proteins common to all conditions. KEGG pathway analysis of these proteins identified enrichment of metabolic pathways, TCA cycle, glycolysis/gluconeogenesis, fatty acid metabolism, and carbon metabolism, with similar pathways altered by diet and insulin resistance. Thus, the rat liver ubiquitome is sensitive to diet and insulin stimulation and this is perturbed in insulin resistance.Entities:
Mesh:
Substances:
Year: 2017 PMID: 28329008 PMCID: PMC5362237 DOI: 10.1371/journal.pone.0174431
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Fig 1High-fat, high-sucrose feeding results in obesity and insulin resistance in male rats.
(A) Body mass, (B) epidydimal fat pad mass, and (C) liver triacylglycerol content of rats fed a high fat diet for 4 weeks or chow control. * P < 0.05 vs Chow for each condition by Two-Way ANOVA followed by Tukey’s Multiple Comparisons test. (D) Plasma insulin and (E) blood glucose levels in rats infused with insulin for 10 mins at 0.5 U/kg/h. (F) Liver Akt phosphorylation. * P < 0.05 vs Basal for each condition, # P < 0.05 vs Chow Insulin by Two-Way ANOVA followed by Tukey’s Multiple Comparisons test. Data are mean ± SEM, n = 4.
Fig 2Rat liver ubiquitome.
(A) Experimental design of the ubiquitomic analysis rat liver. (B) Immunoblot analysis of protein ubiquitination in representative samples of rat liver lysates. (C) Venn diagram of previously identified protein in this study and that in the known rat ubiquitome. (D) Ontology analysis of identified ubiquitinylated proteins. (E) Gluconeogenesis/Glycolysis biochemical pathway with ubiquitinylated enzymes marked in red.
Fig 3Insulin stimulation alters the ubiquitome of the rat liver.
(A) Venn diagram of identified proteins in each group. (B) Venn diagram of proteins ubiquitinated in Chow compared to Chow + Insulin. (C) STRING analysis of differentially ubiquitinated proteins. (D) Ontology analysis of identified ubiquitinylated proteins.
Fig 4High-fat, high-sucrose diet alters the ubiquitome of the rat liver.
(A) Venn diagram of identified proteins ubiquitinated in HFSD compared to HFSD + Insulin. (B) Ontology analysis of identified ubiquitinylated proteins in HFSD compared to HFSD + Insulin. (C) STRING analysis of differentially ubiquitinated proteins. (D). Ontology analysis of identified ubiquitinated proteins responsive to insulin in Chow but not in HFSD.