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dc.contributor.authorSamali, Afshin
dc.date.accessioned2015-04-18T11:46:29Z
dc.date.available2015-04-18T11:46:29Z
dc.date.issued2014
dc.identifier.citationRead, DE,Gupta, A,Ladilov, Y,Samali, A,Gupta, S (2014) 'miRNA signature of unfolded protein response in H9c2 rat cardiomyoblasts'. Cell And Bioscience, 4 .en_US
dc.identifier.urihttp://hdl.handle.net/10379/4936
dc.description.abstractBackground: Glucose and oxygen deprivation during ischemia is known to affect the homeostasis of the endoplasmic reticulum (ER) in ways predicted to activate the unfolded protein response (UPR). Activation of UPR signalling due to ER stress is associated with the development of myocardial infarction (MI). MicroRNAs (miRNAs) are key regulators of cardiovascular development and deregulation of miRNA expression is involved in the onset of many cardiovascular diseases. However, little is known about the mechanisms regulating the miRNA expression in the cardiovascular system during disease development and progression. Here we performed genome-wide miRNA expression profiling in rat cardiomyoblasts to identify the miRNAs deregulated during UPR, a crucial component of ischemia.Results: We found that expression of 86 microRNAs changed significantly during conditions of UPR in H9c2 cardiomyoblasts. We found that miRNAs with known function in cardiomyoblasts biology (miR-206, miR-24, miR-125b, miR-133b) were significantly deregulated during the conditions of UPR in H9c2 cells. The expression of miR-7a was upregulated by UPR and simulated in vitro ischemia in cardiomyoblasts. Further, ectopic expression of miR-7a provides resistance against UPR-mediated apoptosis in cardiomyoblasts. The ample overlap of miRNA expression signature between our analysis and different models of cardiac dysfunction further confirms the role of UPR in cardiovascular diseases.Conclusions: This study demonstrates the role of UPR in deregulating the expression of miRNAs in MI. Our results provide novel insights about the molecular mechanisms of deregulated miRNA expression during the heart disease pathogenesis.en_US
dc.language.isoenen_US
dc.relation.ispartofCell And Bioscienceen
dc.rightsAttribution-NonCommercial-NoDerivs 3.0 Ireland
dc.rights.urihttps://creativecommons.org/licenses/by-nc-nd/3.0/ie/
dc.subjectUnfolded protein responseen_US
dc.subjectER stressen_US
dc.subjectMicroRNAsen_US
dc.subjectMyocardial infarctionen_US
dc.subjectMir-7aen_US
dc.subjectApoptosisen_US
dc.subjectENDOPLASMIC-RETICULUM STRESSen_US
dc.subjectMICRORNA REGULATIONen_US
dc.subjectGENE-EXPRESSIONen_US
dc.subjectCELL-DEATHen_US
dc.subjectAPOPTOSISen_US
dc.subjectISCHEMIAen_US
dc.subjectDISEASEen_US
dc.subjectHEARTen_US
dc.subjectCARDIOMYOCYTESen_US
dc.subjectPROLIFERATIONen_US
dc.titlemiRNA signature of unfolded protein response in H9c2 rat cardiomyoblastsen_US
dc.typeArticleen_US
dc.date.updated2015-03-16T14:43:48Z
dc.identifier.doi10.1186/2045-3701-4-56
dc.description.peer-reviewedpeer-reviewed
dc.contributor.funder|~|
dc.internal.rssid8514063
dc.local.contactAfshin Samali, Bioscience Research Building, North Campus, Nui Galway. 2440 Email: afshin.samali@nuigalway.ie
dc.local.copyrightcheckedYes Paid Open Access publication. Free to use.
dc.local.versionPUBLISHED
nui.item.downloads196


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