DeLorenzo R J
Fed Proc. 1982 May;41(7):2265-72.
Calmodulin is a major Ca2+-binding protein in the brain that may regulate many of the neuronal functions of Ca2+. Calmodulin was characterized in preparations of presynaptic cytoplasm and highly enriched synaptic vesicles fractions. Calmodulin regulated the Ca2+-stimulated phosphorylation of several proteins in synaptic vesicle, synaptic membrane, synaptic junction, and postsynaptic density fractions. Depolarization-dependent Ca2+ influx stimulated the phosphorylation of several synaptic proteins in whole synaptosomes, synaptic vesicles, and synaptic junctions in intact synaptosomes. Evidence is presented to demonstrate that Ca2+-calmodulin-regulated synaptic protein phosphorylation plays a role in regulating neurotransmitter release in intact synaptosome and isolated vesicle preparations. Synaptic vesicle and synaptic membrane interactions in isolated systems were mediated by Ca2+ and calmodulin, and occurred under conditions that simultaneously stimulated neurotransmitter release and protein phosphorylation. Ca2+ and calmodulin stimulated the activity of a synaptic tubulin kinase system that was shown to be a distinct enzyme system from the cyclic AMP protein kinases. The calmodulin-regulated phosphorylation of tubulin was found to cause marked alterations in the properties of tubulin, resulting in the formation of insoluble tubulin fibrils. The possible role of the tubulin kinase in converting the Ca2+ signal into a motor force at the synapse and may regulate the effects of Ca2+ on neurotransmitter release and many other aspects of synaptic activity.
钙调蛋白是大脑中一种主要的钙离子结合蛋白,可能调节许多钙离子的神经元功能。钙调蛋白在突触前细胞质和高度富集的突触小泡组分中得到了表征。钙调蛋白调节突触小泡、突触膜、突触连接和突触后致密组分中几种蛋白质的钙离子刺激的磷酸化。去极化依赖性钙离子内流刺激了完整突触体、突触小泡和完整突触体中突触连接中几种突触蛋白的磷酸化。有证据表明,钙离子-钙调蛋白调节的突触蛋白磷酸化在调节完整突触体和分离的小泡制剂中的神经递质释放中起作用。分离系统中的突触小泡和突触膜相互作用由钙离子和钙调蛋白介导,并在同时刺激神经递质释放和蛋白质磷酸化的条件下发生。钙离子和钙调蛋白刺激了一种突触微管蛋白激酶系统的活性,该系统被证明是一种与环磷酸腺苷蛋白激酶不同的酶系统。发现微管蛋白的钙调蛋白调节的磷酸化会导致微管蛋白性质的显著改变,从而导致不溶性微管蛋白原纤维的形成。微管蛋白激酶在将钙离子信号转化为突触处的驱动力方面可能发挥的作用,并可能调节钙离子对神经递质释放和突触活动的许多其他方面的影响。