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Protein kinase Cbeta regulates heterologous desensitization of thrombin receptor (PAR-1) in endothelial cells
Authors:Yan, Weihong   Tiruppathi, Chinnaswamy   Lum, Hazel   Qiao, Renli   Malik, Asrar B.
Abstract:We studied the effects of protein kinase C (PKC) activation onendothelial cell surface expression and function of the proteolytically activated thrombin receptor 1 (PAR-1). Cell surface PAR-1 expression was assessed by immunofluorescence (using anti-PAR-1 monoclonal antibody), and receptor activation was assessed by measuring increases in cytosolic Ca2+ concentration inhuman dermal microvascular endothelial cells (HMEC) exposed toalpha -thrombin or phorbol ester,12-O-tetradecanoylphorbol-13-acetate (TPA).Immunofluorescence showed that thrombin and TPA reduced the cellsurface expression of PAR-1. Prior exposure of HMEC to thrombin for 5 min desensitized the cells to thrombin, indicating homologous PAR-1desensitization. In contrast, prior activation of PKC with TPA produceddesensitization to thrombin and histamine, indicatingheterologous PAR-1 desensitization. Treatment of cells withstaurosporine, a PKC inhibitor, fully prevented heterologous desensitization, whereas thrombin-induced homologous desensitization persisted. Depletion of PKCbeta isozymes(PKCbeta I andPKCbeta II) by transducing cellswith antisense cDNA of PKCbeta Iprevented the TPA-induced decrease in cell surface PAR-1 expression andrestored ~60% of the cytosolic Ca2+ signal in response tothrombin. In contrast, depletion of PKCbeta isozymes did not affect theloss of cell surface PAR-1 and induction of homologous PAR-1desensitization by thrombin. Therefore, homologous PAR-1desensitization by thrombin occurs independently of PKCbeta isozymes,whereas the PKCbeta -activated pathway is important in signaling heterologous PAR-1 desensitization in endothelial cells.

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