Search results for "Protein deacetylase"

showing 4 items of 4 documents

Antioxidant effects of resveratrol in the cardiovascular system

2016

The antioxidant effects of resveratrol (3,5,4'-trihydroxy-trans-stilbene) contribute substantially to the health benefits of this compound. Resveratrol has been shown to be a scavenger of a number of free radicals. However, the direct scavenging activities of resveratrol are relatively poor. The antioxidant properties of resveratrol in vivo are more likely to be attributable to its effect as a gene regulator. Resveratrol inhibits NADPH oxidase-mediated production of ROS by down-regulating the expression and activity of the oxidase. This polyphenolic compound reduces mitochondrial superoxide generation by stimulating mitochondria biogenesis. Resveratrol prevents superoxide production from un…

0301 basic medicinePharmacologyOxidase testAntioxidantendocrine system diseasesbiologySuperoxideSirtuin 1organic chemicalsmedicine.medical_treatmentfood and beveragesMitochondrionResveratrolmedicine.disease_cause03 medical and health scienceschemistry.chemical_compound030104 developmental biologychemistryBiochemistrymedicinebiology.proteinProtein deacetylaseOxidative stressBritish Journal of Pharmacology
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The Role of Sirtuin1 in Regulating Endothelial Function, Arterial Remodeling and Vascular Aging

2019

Sirtuin1 (SIRT1), which belongs to a highly conserved family of protein deacetylase, is one of the best-studied sirtuins. SIRT1 is involved in a variety of biological processes, including energy metabolism, cell proliferation and survival, chromatin dynamics, and DNA repair. In the vasculature, SIRT1 is ubiquitously expressed in endothelial cells, smooth muscle cells, and perivascular adipose tissues (PVAT). Endothelial SIRT1 plays a unique role in vasoprotection by regulating a large variety of proteins, including endothelial nitric oxide synthase (eNOS). In endothelial cells, SIRT1 and eNOS regulate each other synergistically through positive feedback mechanisms for the maintenance of end…

0301 basic medicinePhysiologyDNA repairvascular remodelingAdipose tissueReview030204 cardiovascular system & hematologylcsh:Physiology03 medical and health sciencesSIRT10302 clinical medicineEnosPhysiology (medical)lcsh:QP1-981biologyCell growthbiology.organism_classificationChromatinCell biologyenzymes and coenzymes (carbohydrates)030104 developmental biologyvascular agingPVATeNOSProtein deacetylaseVascular aginghormones hormone substitutes and hormone antagonistsFunction (biology)Frontiers in Physiology
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Cardiovascular effects and molecular targets of resveratrol

2012

Resveratrol (3,5,4'-trihydroxy-trans-stilbene) is a polyphenol phytoalexin present in a variety of plant species and has been implicated to explain the health benefits of red wine. A wide range of health beneficial effects have been demonstrated for resveratrol in animal studies. In this review, we summarize the cardiovascular effects of resveratrol with emphasis on the molecular targets of the compound. In this regard, resveratrol stimulates endothelial production of nitric oxide, reduces oxidative stress, inhibits vascular inflammation and prevents platelet aggregation. In animal models of cardiovascular disease, resveratrol protects the heart from ischemia-reperfusion injury, reduces blo…

Cancer Researchmedicine.medical_specialtyPhysiologyClinical BiochemistryEstrogen receptorResveratrolPharmacologyNitric Oxidemedicine.disease_causeBiochemistryNitric oxidechemistry.chemical_compoundInternal medicineStilbenesmedicineAnimalsHumansMolecular Targeted TherapyProtein kinase AbiologySirtuin 1food and beveragesCardiovascular AgentsEndocrinologychemistryCardiovascular DiseasesResveratrolbiology.proteinProtein deacetylaseAnimal studiesOxidative stressNitric Oxide
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TRPA1 channel is a cardiac target of mIGF-1/SIRT1 signaling.

2014

Cardiac overexpression of locally acting muscle-restricted (m)IGF-1 and the consequent downstream activation of NAD+-dependent protein deacetylase sirtuin 1 (SIRT1) trigger potent cardiac antioxidative and antihypertrophic effects. Transient receptor potential (TRP) cation channel A1 (TRPA1) belongs to the TRP ion channel family of molecular detectors of thermal and chemical stimuli that activate sensory neurons to produce pain. Recently, it has been shown that TRPA1 activity influences blood pressure, but the significance of TRPA1 in the cardiovascular system remains elusive. In the present work, using genomic screening in mouse hearts, we found that TRPA1 is a target of mIGF-1/SIRT1 sign…

Member 1PhysiologyTransgeneHeart; Insulin-like growth factor-1; Member 1; Sirtuin 1; Subfamily A; Transient receptor potential cation channelBlood PressurePharmacologymedicine.disease_causeTransient receptor potential channelMiceTransient Receptor Potential ChannelsSirtuin 1Physiology (medical)medicineAnimalsMyocytes CardiacInsulin-Like Growth Factor IPromoter Regions GeneticTRPA1 Cation ChannelbiologySirtuin 1AntagonistIGF-1 SIRT1 TRPA1 micefood and beveragesHeartTransient receptor potential cation channelInsulin-like growth factor-1Subfamily APurinesbiology.proteinProtein deacetylaseAcetanilidesNAD+ kinaseSignal transductionCardiology and Cardiovascular Medicinepsychological phenomena and processesOxidative stressSignal Transduction
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