The Regulation of Insulin-Stimulated Cardiac Glucose Transport via Protein Acetylation
Explore this paper's citation graph
Summary
The purpose of the present review is to gather, in a synthetic model, the different evidences that demonstrate the role of acetylation in the inhibition of the insulin-stimulated glucose uptake in cardiac muscle.
- Type
- article
- Published
- 2018-06-12
- Cited by
- 23
- References
- 51
- Access
- Open access
- OpenAlex
- https://openalex.org/W29946550
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:47021906
Keywords
Stereochemistry, Chemistry, Benthic zone, Combinatorics, Physics
References
- Lysine Acetylation and Deacetylation in Brain Development and Neuropathies
- The presence of acetyl groups of histones.
- Regulation of glucose uptake by muscle. 8. Effects of fatty acids, ketone bodies and pyruvate, and of alloxan-diabetes and starvation, on the uptake and metabolic fate of glucose in rat heart and diaphragm muscles.
- Acetyl coenzyme A: a central metabolite and second messenger.
- SIRT3 Is Crucial for Maintaining Skeletal Muscle Insulin Action and Protects Against Severe Insulin Resistance in High-Fat–Fed Mice
- The Direct Involvement of SirT1 in Insulin-induced Insulin Receptor Substrate-2 Tyrosine Phosphorylation*
- Cardiac Metabolism and Its Interactions with Contraction, Growth, and Survival of the Cardiomyocte
- Metabolic and genetic regulation of cardiac energy substrate preference.
- Insulin signalling in the heart.
- Hexokinase II: the integration of energy metabolism and control of apoptosis.
- SIRT1 metabolic actions: Integrating recent advances from mouse models
- Lysine Acetylation Targets Protein Complexes and Co-Regulates Major Cellular Functions
- Acetylation of TUG Protein Promotes the Accumulation of GLUT4 Glucose Transporters in an Insulin-responsive Intracellular Compartment*
- The glucose fatty-acid cycle. Its role in insulin sensitivity and the metabolic disturbances of diabetes mellitus.
- A role for the mitochondrial deacetylase Sirt3 in regulating energy homeostasis
- Molecular mechanisms for myocardial mitochondrial dysfunction in the metabolic syndrome.
- A two-way street: reciprocal regulation of metabolism and signalling
- Isolation of acetylpeptide from enzymic digests of TMV-protein.
- Sirt2 Deacetylase Is a Novel AKT Binding Partner Critical for AKT Activation by Insulin*
- Obesity-induced lysine acetylation increases cardiac fatty acid oxidation and impairs insulin signalling.
Cited by
- Targeting the glucagon receptor improves cardiac function and enhances insulin sensitivity following a myocardial infarction
- Allosteric, transcriptional and post-translational control of mitochondrial energy metabolism.
- Use of cardiac magnetic resonance to detect changes in metabolism in heart failure.
- Understanding the distinct subcellular trafficking of CD36 and GLUT4 during the development of myocardial insulin resistance.
- Cardiac metabolism as a driver and therapeutic target of myocardial infarction
- Acetylation in cardiovascular diseases: Molecular mechanisms and clinical implications.
- Glucose transporters in cardiovascular system in health and disease
- A new degree of complexi(n)ty in the regulation of GLUT4 trafficking.
- Comparison of Exogenous Ketone Administration Versus Dietary Carbohydrate Restriction on Myocardial Glucose Suppression: A Crossover Clinical Trial
- Effects of Lipid Overload on Heart in Metabolic Diseases
- Propolis induces cardiac metabolism changes in 6-hydroxydopamine animal model: A dietary intervention as a potential cardioprotective approach in Parkinson’s disease
- Resveratrol improves diabetic cardiomyopathy by preventing asymmetric dimethylarginine-caused peroxisome proliferator-activated receptor-γ coactivator-1α acetylation.
- The utility of beta-hydroxybutyrate in detecting myocardial glucose uptake suppression in patients undergoing inflammatory [18F]-FDG PET studies
- Biochemical Aspects That Lead to Abusive Use of Trimetazidine in Performance Athletes: A Mini-Review
- The paradox of fatty-acid β-oxidation in muscle insulin resistance: Metabolic control and muscle heterogeneity.
- Role of melatonin in mitigation of insulin resistance and ensuing diabetic cardiomyopathy.
- Protein lysine acetylation regulates beef color stability during storage
- Post-translational Modifications of Apolipoproteins as Promising Biomarkers for Diabetes-Related Cardiovascular Diseases: A Comprehensive Review.
- NAD+-Dependent Lysine Acetylation Regulates Glucose Uptake and Fatty Acid Oxidation in Cardiomyocytes
- Destabilization of cardiac myosin acetylation and sequestration with type 2 diabetes mellitus
Related papers
No related papers recorded.