Opatowsky Yarden, Chen Chien-Chang, Campbell Kevin P, Hirsch Joel A
Department of Biochemistry, Faculty of Life Sciences, Tel Aviv University, Ramat Aviv 69978, Israel.
Neuron. 2004 May 13;42(3):387-99. doi: 10.1016/s0896-6273(04)00250-8.
Voltage-dependent calcium channels (VDCC) are multiprotein assemblies that regulate the entry of extracellular calcium into electrically excitable cells and serve as signal transduction centers. The alpha1 subunit forms the membrane pore while the intracellular beta subunit is responsible for trafficking of the channel to the plasma membrane and modulation of its electrophysiological properties. Crystallographic analyses of a beta subunit functional core alone and in complex with a alpha1 interaction domain (AID) peptide, the primary binding site of beta to the alpha1 subunit, reveal that beta represents a novel member of the MAGUK protein family. The findings illustrate how the guanylate kinase fold has been fashioned into a protein-protein interaction module by alteration of one of its substrate sites. Combined results indicate that the AID peptide undergoes a helical transition in binding to beta. We outline the mechanistic implications for understanding the beta subunit's broad regulatory role of the VDCC, particularly via the AID.
电压依赖性钙通道(VDCC)是多蛋白复合体,可调节细胞外钙进入电兴奋性细胞,并作为信号转导中心。α1亚基形成膜孔,而细胞内β亚基负责将通道转运至质膜并调节其电生理特性。单独对β亚基功能核心以及与α1相互作用结构域(AID)肽(β与α1亚基的主要结合位点)形成的复合体进行晶体学分析,结果表明β代表MAGUK蛋白家族的一个新成员。这些发现说明了鸟苷酸激酶折叠结构是如何通过改变其一个底物位点而形成蛋白质-蛋白质相互作用模块的。综合结果表明,AID肽在与β结合时会发生螺旋转变。我们概述了这些机制对于理解β亚基在VDCC中的广泛调节作用的意义,尤其是通过AID发挥的作用。