2012
miR-1 mediated suppression of Sorcin regulates myocardial contractility through modulation of Ca2+ signaling
Ali R, Huang Y, Maher SE, Kim RW, Giordano FJ, Tellides G, Geirsson A. miR-1 mediated suppression of Sorcin regulates myocardial contractility through modulation of Ca2+ signaling. Journal Of Molecular And Cellular Cardiology 2012, 52: 1027-1037. PMID: 22326846, DOI: 10.1016/j.yjmcc.2012.01.020.Peer-Reviewed Original ResearchMeSH KeywordsAnimalsBase SequenceCalcium SignalingCalcium-Binding ProteinsCardiac VolumeCardiomyopathiesCell LineDEAD-box RNA HelicasesHeartHumansMaleMiceMice, 129 StrainMice, Inbred C57BLMice, KnockoutMicroRNAsMyocardial ContractionMyocardiumRibonuclease IIIRNA InterferenceRNA, Small InterferingUp-RegulationConceptsCardiac functionMiR-1Normal cardiac contractile functionEnd-stage cardiomyopathyCardiac contractile functionWild-type miceCalcium signalingExcitation-contraction couplingModulation of Ca2Cultured mouse cardiomyocytesAcute cardiomyopathyMiR-1 targetsHeart failureMyocardial contractilityMiR-1 knockdownContractile functionAntagomir treatmentSorcin expressionCalcium homeostasisKnockdown miceSorcin levelsCardiac phenotypeMouse cardiomyocytesCritical mediatorPathological relevance
2008
Urocortin2 inhibits tumor growth via effects on vascularization and cell proliferation
Hao Z, Huang Y, Cleman J, Jovin IS, Vale WW, Bale TL, Giordano FJ. Urocortin2 inhibits tumor growth via effects on vascularization and cell proliferation. Proceedings Of The National Academy Of Sciences Of The United States Of America 2008, 105: 3939-3944. PMID: 18308934, PMCID: PMC2268793, DOI: 10.1073/pnas.0712366105.Peer-Reviewed Original ResearchConceptsInhibits tumor growthTumor growthTumor vascularizationActivation of CRFR2Potential therapeutic roleTumor growth inhibitionTumor-suppressing effectsCRFR2 activationMeasurable tumorsTumor cell cyclingCell tumorsTherapeutic roleClinical malignancyUrocortin 2Peripheral tissuesCRFR2Ucn2Genetic deletionTissue vascularityDirect inhibitionVessel diameterCell proliferationVessel numberVascularizationTumors