Blumenstein Yakov, Maximyuk Olexandr P, Lozovaya Natalia, Yatsenko Natalia M, Kanevsky Nataly, Krishtal Oleg, Dascal Nathan
Department of Physiology and Pharmacology, Sackler School of Medicine, Tel Aviv University, Ramat Aviv 69978, Israel.
J Physiol. 2004 Apr 1;556(Pt 1):121-34. doi: 10.1113/jphysiol.2003.056168. Epub 2004 Jan 23.
N-type voltage-dependent Ca(2+) channels (N-VDCCs) play important roles in neurotransmitter release and certain postsynaptic phenomena. These channels are modulated by a number of intracellular factors, notably by Gbetagamma subunits of G proteins, which inhibit N-VDCCs in a voltage-dependent (VD) manner. Here we show that an increase in intracellular Na(+) concentration inhibits N-VDCCs in hippocampal pyramidal neurones and in Xenopus oocytes. In acutely dissociated hippocampal neurones, Ba(2+) current via N-VDCCs was inhibited by Na(+) influx caused by the activation of NMDA receptor channels. In Xenopus oocytes expressing N-VDCCs, Ba(2+) currents were inhibited by Na(+) influx and enhanced by depletion of Na(+), after incubation in a Na(+)-free extracellular solution. The Na(+)-induced inhibition was accompanied by the development of VD facilitation, a hallmark of a Gbetagamma-dependent process. Na(+)-induced regulation of N-VDCCs is Gbetagamma dependent, as suggested by the blocking of Na(+) effects by Gbetagamma scavengers and by excess Gbetagamma, and may be mediated by the Na(+)-induced dissociation of Galphabetagamma heterotrimers. N-VDCCs may be novel effectors of Na(+)ion, regulated by the Na(+) concentration via Gbetagamma.
N型电压依赖性钙通道(N-VDCCs)在神经递质释放和某些突触后现象中发挥重要作用。这些通道受到多种细胞内因子的调节,尤其是G蛋白的Gβγ亚基,其以电压依赖性(VD)方式抑制N-VDCCs。在此我们表明,细胞内钠离子浓度升高会抑制海马锥体神经元和非洲爪蟾卵母细胞中的N-VDCCs。在急性分离的海马神经元中,通过N-VDCCs的钡电流受到NMDA受体通道激活所引起的钠离子内流的抑制。在表达N-VDCCs的非洲爪蟾卵母细胞中,在无钠细胞外溶液中孵育后,钡电流受到钠离子内流的抑制,并因钠离子耗竭而增强。钠离子诱导的抑制伴随着VD易化的出现,这是Gβγ依赖性过程的一个标志。Gβγ清除剂和过量的Gβγ对钠离子效应的阻断表明,钠离子对N-VDCCs的诱导调节是Gβγ依赖性的,并且可能由钠离子诱导的Gαβγ异源三聚体解离介导。N-VDCCs可能是钠离子的新型效应器,通过Gβγ受钠离子浓度调节。