Hamid J, Nelson D, Spaetgens R, Dubel S J, Snutch T P, Zamponi G W
Department of Pharmacology and Therapeutics, Neuroscience Research Group, University of Calgary, Calgary, Alberta T2N 4N1, Canada.
J Biol Chem. 1999 Mar 5;274(10):6195-202. doi: 10.1074/jbc.274.10.6195.
The modulation of presynaptic calcium channel activity by second messengers provides a fine tuning mechanism for neurotransmitter release. In neurons, the activation of certain G protein-coupled receptors reduces N-type channel activity by approximately 60%. In contrast, activation of protein kinase C (PKC) results in an approximately 50% increase in N-type channel activity, and subsequent G protein inhibition is antagonized. Here, we describe the molecular determinants that control the dual effects of PKC-dependent phosphorylation. The double substitution of two adjacent PKC consensus sites in the calcium channel domain I-II linker (Thr422, Ser425) to alanines abolished both PKC-dependent up-regulation and the PKC-G protein cross-talk. The single substitution of Ser425 to glutamic acid abolished PKC up-regulation but had no effect on G protein modulation. Replacement of Thr422 with glutamic acid eliminated PKC-dependent up-regulation and mimicked the effects of PKC phosphorylation on G protein inhibition. Our data suggest that Thr422 mediates the antagonistic effect of PKC on G protein modulation, while phosphorylation of either Thr422 or Ser425 are sufficient to increase N-type channel activity. Thus, Thr422 serves as a molecular switch by which PKC is able to simultaneously trigger the up-regulation of channel activity and antagonize G protein inhibition.
第二信使对突触前钙通道活性的调节为神经递质释放提供了一种精细调节机制。在神经元中,某些G蛋白偶联受体的激活可使N型通道活性降低约60%。相反,蛋白激酶C(PKC)的激活会使N型通道活性增加约50%,随后G蛋白抑制作用被拮抗。在此,我们描述了控制PKC依赖性磷酸化双重效应的分子决定因素。将钙通道结构域I-II连接区中两个相邻的PKC共有位点(Thr422、Ser425)双替换为丙氨酸,消除了PKC依赖性上调和PKC-G蛋白串扰。将Ser425单替换为谷氨酸消除了PKC上调,但对G蛋白调节无影响。将Thr422替换为谷氨酸消除了PKC依赖性上调,并模拟了PKC磷酸化对G蛋白抑制的作用。我们的数据表明,Thr422介导了PKC对G蛋白调节的拮抗作用,而Thr422或Ser425的磷酸化足以增加N型通道活性。因此,Thr422作为一个分子开关,PKC能够通过它同时触发通道活性的上调并拮抗G蛋白抑制。