Stahelin Robert V, Wang Jiyao, Blatner Nichole R, Rafter John D, Murray Diana, Cho Wonhwa
Department of Chemistry, University of Illinois, Chicago, Illinois 60607-7061, USA.
J Biol Chem. 2005 Oct 28;280(43):36452-63. doi: 10.1074/jbc.M506224200. Epub 2005 Aug 3.
The regulatory domain of protein kinase Calpha (PKCalpha) contains three membrane-targeting modules, two C1 domains (C1A and C1B) that bind diacylglycerol and phorbol ester, and the C2 domain that is responsible for the Ca2+-dependent membrane binding. Accumulating evidence suggests that C1A and C2 domains of PKCalpha are tethered in the resting state and that the tethering is released upon binding to the membrane containing phosphatidylserine. The homology modeling and the docking analysis of C1A and C2 domains of PKCalpha revealed a highly complementary interface that comprises Asp55-Arg252 and Arg42-Glu282 ion pairs and a Phe72-Phe255 aromatic pair. Mutations of these residues in the predicted C1A-C2 interface showed large effects on in vitro membrane binding, enzyme activity, phosphatidylserine selectivity, and cellular membrane translocation of PKCalpha, supporting their involvement in interdomain interactions. In particular, D55A (or D55K) and R252A (or R252E) mutants showed much higher basal membrane affinity and enzyme activity and faster subcellular translocation than wild type, whereas a double charge-reversal mutant (D55K/R252E) behaved analogously to wild type, indicating that a direct electrostatic interaction between the two residues is essential for the C1A-C2 tethering. Collectively, these studies provide new structural insight into PKCalpha C1A-C2 interdomain interactions and the mechanism of lipid-mediated PKCalpha activation.
蛋白激酶Cα(PKCα)的调节结构域包含三个膜靶向模块,即两个结合二酰基甘油和佛波酯的C1结构域(C1A和C1B),以及负责Ca2+依赖性膜结合的C2结构域。越来越多的证据表明,PKCα的C1A和C2结构域在静止状态下是相连的,并且在与含有磷脂酰丝氨酸的膜结合时这种连接会被释放。PKCα的C1A和C2结构域的同源建模和对接分析揭示了一个高度互补的界面,该界面包含Asp55-Arg252和Arg42-Glu282离子对以及Phe72-Phe255芳香对。预测的C1A-C2界面中这些残基的突变对PKCα的体外膜结合、酶活性、磷脂酰丝氨酸选择性和细胞膜转位有很大影响,支持它们参与结构域间相互作用。特别是,D55A(或D55K)和R252A(或R252E)突变体显示出比野生型更高的基础膜亲和力和酶活性以及更快的亚细胞转位,而双电荷反转突变体(D55K/R252E)的行为与野生型类似,表明这两个残基之间的直接静电相互作用对于C1A-C2连接至关重要。总的来说,这些研究为PKCα的C1A-C2结构域间相互作用以及脂质介导的PKCα激活机制提供了新的结构见解。