Francis Howard W, Scott John C, Manis Paul B
Department of Otolaryngology-Head and Neck Surgery, The Johns Hopkins University School of Medicine, Baltimore, MD 21205, USA.
Brain Res. 2002 Sep 27;951(1):9-22. doi: 10.1016/s0006-8993(02)03095-0.
Many cells in the outer two layers of the dorsal cochlear nucleus (DCN) express high levels of the phospholipid-activated, calcium dependent kinase, protein kinase C (PKC), an enzyme that can phosphorylate numerous proteins involved in neurotransmission and postsynaptic signaling. We investigated the effects of stimulating PKC with phorbol esters (phorbol 12-13 diacetate; PDAc) on parallel fiber synaptic transmission in brain slices of the guinea pig DCN. Phorbol esters increased the amplitude of the postsynaptic components of the field potential, including the excitatory post-synaptic field potential (fEPSP) and the population spike following electric stimulation of parallel fibers. Phorbol esters simultaneously decreased paired-pulse facilitation, suggesting that transmitter release mechanisms were affected. Potentiation of synaptic transmission and diminished paired-pulse potentiation were also observed in intracellular recordings of DCN neurons. The effects of phorbol esters were antagonized by the specific PKC blockers bisindolylmaleimide and calphostin C. Although modulation of the synaptic potentials appears to be mediated by presynaptic PKC, the differential effects of PDAc on the fEPSP and the population spike also suggest the involvement of postsynaptic PKC and postsynaptic targets. These experiments demonstrate that protein kinase C is capable of profoundly modulating synaptic transmission at parallel fiber synapses in the DCN.
耳蜗背侧核(DCN)外层两层中的许多细胞都高表达磷脂激活的钙依赖性激酶——蛋白激酶C(PKC),该酶可使众多参与神经传递和突触后信号传导的蛋白质磷酸化。我们研究了用佛波酯(佛波醇12 - 13二乙酸酯;PDAc)刺激PKC对豚鼠DCN脑片平行纤维突触传递的影响。佛波酯增加了场电位突触后成分的幅度,包括兴奋性突触后场电位(fEPSP)以及平行纤维电刺激后的群体峰电位。佛波酯同时降低了双脉冲易化,提示递质释放机制受到影响。在DCN神经元的细胞内记录中也观察到了突触传递的增强和双脉冲增强作用的减弱。佛波酯的作用被特异性PKC阻滞剂双吲哚马来酰亚胺和钙磷蛋白C拮抗。尽管突触电位的调节似乎由突触前PKC介导,但PDAc对fEPSP和群体峰电位的不同影响也提示突触后PKC和突触后靶点的参与。这些实验表明蛋白激酶C能够深刻调节DCN中平行纤维突触的突触传递。