Barrie A P, Nicholls D G, Sanchez-Prieto J, Sihra T S
Department of Biochemistry, University of Dundee, Scotland, U.K.
J Neurochem. 1991 Oct;57(4):1398-404. doi: 10.1111/j.1471-4159.1991.tb08306.x.
The mechanism by which protein kinase C (PKC) activates transmitter release from guinea pig cerebrocortical synaptosomes was investigated by employing parallel fluorescent assays of glutamate release, cytoplasmic free Ca2+, and plasma membrane potential. 4 beta-Phorbol dibutyrate (4 beta-PDBu) enhances the Ca(2+)-dependent, 4-aminopyridine (4AP)-evoked release of glutamate from synaptosomes, the 4AP-evoked elevation of cytoplasmic free Ca2+, and the 4AP-evoked depolarization of the plasma membrane. 4 beta-PDBu itself causes a slow depolarization, which may underlie the small effect of 4 beta-PDBu on spontaneous, KCl-evoked, and Ca(2+)-independent/4AP-evoked glutamate release. Because 4AP (but not KCl) generates spontaneous, tetrodotoxin-sensitive action potentials in synaptosomes, a major locus of presynaptic PKC action is to enhance these action potentials, perhaps by inhibiting delayed rectifier K+ channels.
通过对谷氨酸释放、细胞质游离钙离子和质膜电位进行平行荧光检测,研究了蛋白激酶C(PKC)激活豚鼠大脑皮质突触体递质释放的机制。4β-佛波醇二丁酸酯(4β-PDBu)增强了突触体中钙离子依赖性、4-氨基吡啶(4AP)诱发的谷氨酸释放,4AP诱发的细胞质游离钙离子升高,以及4AP诱发的质膜去极化。4β-PDBu本身会引起缓慢的去极化,这可能是4β-PDBu对自发的、氯化钾诱发的以及钙离子非依赖性/4AP诱发的谷氨酸释放产生微小影响的原因。由于4AP(而非氯化钾)在突触体中产生自发的、对河豚毒素敏感的动作电位,突触前PKC作用的一个主要位点是增强这些动作电位,可能是通过抑制延迟整流钾通道来实现的。