Tabata T, Ishida A T
Section of Neurobiology, Physiology, and Behavior, University of California, Davis, 95616-8519, USA.
J Neurosci. 1999 Jul 1;19(13):5195-204. doi: 10.1523/JNEUROSCI.19-13-05195.1999.
Extracellular Zn2+ modulates current passage through voltage- and neurotransmitter-gated ion channels, at concentrations less than, or near, those produced by release at certain synapses. Electrophysiological effects of cytoplasmic Zn2+ are less well understood, and effects have been observed at concentrations that are orders of magnitude greater than those found in resting and stimulated neurons. To examine whether and how neurons are affected by lower levels of cytoplasmic Zn2+, we tested the effect of Zn2+-selective chelators, Zn2+-preferring ionophores, and exogenous Zn2+ on neuronal somata during whole-cell patch-clamp recordings. We report here that cytoplasmic zinc facilitates the downward regulation of a background Cl- conductance by an endogenous protein kinase C (PKC) in fish retinal ganglion cell somata and that this regulation is maintained if nanomolar levels of free Zn2+ are available. This regulation has not been described previously in any tissue, as other Cl- currents have been described as reduced by PKC alone, reduced by Zn2+ alone, or reduced by both independently. Moreover, control of cation currents by a zinc-dependent PKC has not been reported previously. The regulation we have observed thus provides the first electrophysiological measurements consistent with biochemical measurements of zinc-dependent PKC activity in other systems. These results suggest that contributions of background Cl- conductances to electrical properties of neurons are susceptible to modulation.
细胞外锌离子在浓度低于或接近某些突触释放所产生的浓度时,会调节通过电压门控和神经递质门控离子通道的电流。细胞质锌离子的电生理效应了解较少,且观察到其效应时的浓度比静息和受刺激神经元中的浓度高几个数量级。为了研究较低水平的细胞质锌离子是否以及如何影响神经元,我们在全细胞膜片钳记录过程中测试了锌离子选择性螯合剂、锌离子偏好性离子载体和外源性锌离子对神经元胞体的影响。我们在此报告,在鱼类视网膜神经节细胞胞体中,细胞质锌离子通过内源性蛋白激酶C(PKC)促进背景氯离子电导的下调,并且如果有纳摩尔水平的游离锌离子,这种调节会持续存在。此前在任何组织中都未描述过这种调节,因为其他氯离子电流被描述为仅被PKC降低、仅被锌离子降低或两者独立降低。此外,此前尚未报道过锌依赖性PKC对阳离子电流的控制。我们观察到的这种调节因此提供了与其他系统中锌依赖性PKC活性的生化测量结果一致的首次电生理测量。这些结果表明,背景氯离子电导对神经元电特性的贡献易受调节。