Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5589590 | Gene | 2017 | 9 Pages |
Abstract
Myocardin is regarded as a key mediator for the change of smooth muscle phenotype. The gap junction protein connexin 43 (Cx43) has been shown to be involved in vascular smooth muscle cells (VSMCs) proliferation and the development of atherosclerosis. However, the role of myocardin on gap junction of cell communication and the relation between myocardin and Cx43 in VSMC phenotypic switch has not been investigated. The goal of the present study is to investigate the molecular mechanism by which myocardin affects Cx43-regulated VSMC proliferation. Data presented in this study demonstrated that inhibition of the Cx43 activation process impaired VSMC proliferation. On the other hand, overexpression miR-206 inhibited VSMC proliferation. In additon, miR-206 silences the expression of Cx43 via targeting Cx43 3â² Untranslated Regions. Importantly, myocardin can significantly promote the expression of miR-206. Cx43 regulates VSMCs' proliferation and metastasis through miR-206, which could be promoted by myocardin and used as a marker for diagnosis and a target for therapeutic intervention. Thus myocardin affected the gap junction by inhibited Cx43 and myocardin-miR-206-Cx43 formed a loop to regulate VSMC phenotypic switch.
Keywords
Ki67PCNASM22MYH11ACTA2CalponinVSMCconnexinsSTAT3CX43GAPDHSRF3′ UTR3′ untranslated region5-ethynyl-2′-deoxyuridineEdUMiR-206alpha smooth muscle actinProliferating Cell Nuclear Antigenchromatin immunoprecipitationCxsTransgelinSmooth muscle myosin heavy chainVascular smooth muscle cellserum response factorsignal transducer and activator of transcription 3MyocardinCHiPnegative controlconnexin 43
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Authors
Hui Li, Yuan Xiang, Li-Juan Fan, Xiao-Yu Zhang, Jia-Peng Li, Cheng-Xi Yu, Le-Yuan Bao, Dong-Sun Cao, Wei-Bing Xing, Xing-Hua Liao, Tong-Cun Zhang,