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P/Q型而非N型钙通道介导大鼠前额叶皮层中快速发放中间神经元向锥体细胞释放γ-氨基丁酸(GABA)。

P/Q-type, but not N-type, calcium channels mediate GABA release from fast-spiking interneurons to pyramidal cells in rat prefrontal cortex.

作者信息

Zaitsev A V, Povysheva N V, Lewis D A, Krimer L S

机构信息

Dept. of Psychiatry, University of Pittsburgh School of Medicine, Pittsburgh, PA 15213-2593, USA.

出版信息

J Neurophysiol. 2007 May;97(5):3567-73. doi: 10.1152/jn.01293.2006. Epub 2007 Feb 28.

DOI:10.1152/jn.01293.2006
PMID:17329622
Abstract

The Cav2.1 (P/Q-) and Cav2.2 (N-type) voltage-gated calcium channels (VGCCs) play a predominant role in neurotransmitter release at central synapses, but their distribution is not uniform across different types of synapses. Although the functional significance of the differential distribution of N- and P/Q-type VGCCs is poorly understood, distinct types of VGCCs appear to differentially affect synaptic properties. For example, P/Q-type VGCCs are located closer to release sites and are less affected by G-protein-mediated inhibition than are N-type VGCCs. Thus P/Q-type VGCCs might be beneficial at synapses with high probability of release and precise timing of neurotransmission, such as the inhibitory inputs from parvalbumin-containing fast-spiking (FS) interneurons to pyramidal cells (PCs) in the neocortex. To determine whether VGCCs types predominate at synapses from FS interneurons to PCs in rat prefrontal cortex, whole cell paired recordings (n = 14) combined with intracellular labeling and fluorescence immunohistochemistry for parvalbumin were performed in acute slices. Bath application of the specific N-type VGCC blocker omega-conotoxin-GVIa (1 microM) did not alter inhibitory postsynaptic potential amplitude, failure rate, or synaptic dynamics; in contrast, application of P/Q-type VGCC blocker omega-agatoxin-IVa (0.5 microM) completely and irreversibly blocked neurotransmission. These results indicate that P/Q-type VGCCs mediate the GABA release from parvalbumin-positive FS interneurons to PCs in the rat neocortex.

摘要

Cav2.1(P/Q型)和Cav2.2(N型)电压门控钙通道(VGCCs)在中枢突触的神经递质释放中起主要作用,但其在不同类型突触中的分布并不均匀。尽管对N型和P/Q型VGCCs差异分布的功能意义了解甚少,但不同类型的VGCCs似乎对突触特性有不同影响。例如,P/Q型VGCCs比N型VGCCs更靠近释放位点,且受G蛋白介导的抑制作用影响较小。因此,P/Q型VGCCs可能在释放概率高且神经传递时间精确的突触中有益,比如在新皮质中,从小清蛋白阳性的快速放电(FS)中间神经元到锥体细胞(PCs)的抑制性输入。为了确定在大鼠前额叶皮质中,FS中间神经元与PCs之间的突触中哪种类型的VGCCs占主导,在急性脑片中进行了全细胞配对记录(n = 14),并结合细胞内标记和小清蛋白的荧光免疫组织化学。浴槽应用特异性N型VGCC阻断剂ω-芋螺毒素-GVIa(1微摩尔)不会改变抑制性突触后电位幅度、失败率或突触动力学;相反,应用P/Q型VGCC阻断剂ω-阿加毒素-IVa(0.5微摩尔)会完全且不可逆地阻断神经传递。这些结果表明,P/Q型VGCCs介导了大鼠新皮质中小清蛋白阳性FS中间神经元向PCs的GABA释放。

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