Hell J W, Westenbroek R E, Warner C, Ahlijanian M K, Prystay W, Gilbert M M, Snutch T P, Catterall W A
Department of Pharmacology, University of Washington, Seattle 98195.
J Cell Biol. 1993 Nov;123(4):949-62. doi: 10.1083/jcb.123.4.949.
To identify and localize the protein products of genes encoding distinct L-type calcium channels in central neurons, anti-peptide antibodies specific for the class C and class D alpha 1 subunits were produced. Anti-CNC1 directed against class C immunoprecipitated 75% of the L-type channels solubilized from rat cerebral cortex and hippocampus. Anti-CND1 directed against class D immunoprecipitated only 20% of the L-type calcium channels. Immunoblotting revealed two size forms of the class C L-type alpha 1 subunit, LC1 and LC2, and two size forms of the class D L-type alpha 1 subunit, LD1 and LD2. The larger isoforms had apparent molecular masses of approximately 200-210 kD while the smaller isoforms were 180-190 kD, as estimated from electrophoresis in gels polymerized from 5% acrylamide. Immunocytochemical studies using CNC1 and CND1 antibodies revealed that the alpha 1 subunits of both L-type calcium channel subtypes are localized mainly in neuronal cell bodies and proximal dendrites. Relatively dense labeling was observed at the base of major dendrites in many neurons. Staining in more distal dendritic regions was faint or undetectable with CND1, while a more significant level of staining of distal dendrites was observed with CNC1, particularly in the dentate gyrus and the CA2 and CA3 areas of the hippocampus. Class C calcium channels were concentrated in clusters, while class D calcium channels were generally distributed in the cell surface membrane of cell bodies and proximal dendrites. Our results demonstrate multiple size forms and differential localization of two subtypes of L-type calcium channels in the cell bodies and proximal dendrites of central neurons. The differential localization and multiple size forms may allow these two channel subtypes to participate in distinct aspects of electrical signal integration and intracellular calcium signaling in neuronal cell bodies. The preferential localization of these calcium channels in cell bodies and proximal dendrites implies their involvement in regulation of calcium-dependent functions occurring in those cellular compartments such as protein phosphorylation, enzyme activity, and gene expression.
为了鉴定和定位中枢神经元中编码不同L型钙通道的基因的蛋白质产物,制备了针对C类和D类α1亚基的抗肽抗体。针对C类的抗CNC1免疫沉淀了从大鼠大脑皮层和海马体中溶解的75%的L型通道。针对D类的抗CND1仅免疫沉淀了20%的L型钙通道。免疫印迹显示C类L型α1亚基有两种大小形式,LC1和LC2,D类L型α1亚基也有两种大小形式,LD1和LD2。根据在由5%丙烯酰胺聚合的凝胶中进行的电泳估计,较大的异构体的表观分子量约为200 - 210 kD,而较小的异构体为180 - 190 kD。使用CNC1和CND1抗体进行的免疫细胞化学研究表明,两种L型钙通道亚型的α1亚基主要定位于神经元细胞体和近端树突。在许多神经元的主要树突基部观察到相对密集的标记。用CND1在更远端的树突区域染色微弱或不可检测,而用CNC1观察到更远端树突有更明显的染色水平,特别是在海马体的齿状回以及CA2和CA3区域。C类钙通道集中成簇,而D类钙通道通常分布在细胞体和近端树突的细胞表面膜中。我们的结果表明,L型钙通道的两种亚型在中枢神经元的细胞体和近端树突中有多种大小形式和不同的定位。不同的定位和多种大小形式可能使这两种通道亚型参与神经元细胞体中电信号整合和细胞内钙信号传导的不同方面。这些钙通道在细胞体和近端树突中的优先定位意味着它们参与调节在这些细胞区室中发生的钙依赖性功能,如蛋白质磷酸化、酶活性和基因表达。