Nagy Bela, Bhavaraju Kamala, Getz Todd, Bynagari Yamini S, Kim Soochong, Kunapuli Satya P
Department of Physiology, Temple University School of Medicine, Philadelphia, PA 19140, USA.
Blood. 2009 Mar 12;113(11):2557-67. doi: 10.1182/blood-2008-07-169268. Epub 2009 Jan 22.
Protein kinase C (PKC) isoforms have been implicated in several platelet functional responses, but the contribution of individual isoforms has not been thoroughly evaluated. Novel PKC isoform PKC-theta is activated by glycoprotein VI (GPVI) and protease-activated receptor (PAR) agonists, but not by adenosine diphosphate. In human platelets, PKC-theta-selective antagonistic (RACK; receptor for activated C kinase) peptide significantly inhibited GPVI and PAR-induced aggregation, dense and alpha-granule secretion at low agonist concentrations. Consistently, in murine platelets lacking PKC-theta, platelet aggregation and secretion were also impaired. PKC-mediated phosphorylation of tSNARE protein syntaxin-4 was strongly reduced in human platelets pretreated with PKC-theta RACK peptide, which may contribute to the lower levels of granule secretion when PKC-theta function is lost. Furthermore, the level of JON/A binding to activated alpha(IIb)beta(3) receptor was also significantly decreased in PKC-theta(-/-) mice compared with wild-type littermates. PKC-theta(-/-) murine platelets showed significantly lower agonist-induced thromboxane A(2) (TXA(2)) release through reduced extracellular signal-regulated kinase phosphorylation. Finally, PKC-theta(-/-) mice displayed unstable thrombus formation and prolonged arterial occlusion in the FeCl(3) in vivo thrombosis model compared with wild-type mice. In conclusion, PKC-theta isoform plays a significant role in platelet functional responses downstream of PAR and GPVI receptors.
蛋白激酶C(PKC)同工型与多种血小板功能反应有关,但各个同工型的作用尚未得到充分评估。新型PKC同工型PKC-θ可被糖蛋白VI(GPVI)和蛋白酶激活受体(PAR)激动剂激活,但不能被二磷酸腺苷激活。在人血小板中,PKC-θ选择性拮抗(RACK;活化C激酶受体)肽在低激动剂浓度下可显著抑制GPVI和PAR诱导的聚集、致密颗粒和α颗粒分泌。同样,在缺乏PKC-θ的小鼠血小板中,血小板聚集和分泌也受损。在用PKC-θ RACK肽预处理的人血小板中,PKC介导的tSNARE蛋白Syntaxin-4磷酸化显著降低,这可能是PKC-θ功能丧失时颗粒分泌水平降低的原因。此外,与野生型同窝小鼠相比,PKC-θ(-/-)小鼠中JON/A与活化的α(IIb)β(3)受体的结合水平也显著降低。PKC-θ(-/-)小鼠血小板显示,通过减少细胞外信号调节激酶磷酸化,激动剂诱导的血栓素A2(TXA2)释放显著降低。最后,与野生型小鼠相比,PKC-θ(-/-)小鼠在体内FeCl3血栓形成模型中表现出不稳定的血栓形成和延长的动脉闭塞。总之,PKC-θ同工型在PAR和GPVI受体下游的血小板功能反应中起重要作用。