Nielsen Peter A, Beahm Derek L, Giepmans Ben N G, Baruch Amos, Hall James E, Kumar Nalin M
Department of Cell Biology, Scripps Research Institute, La Jolla, California 92037, USA.
J Biol Chem. 2002 Oct 11;277(41):38272-83. doi: 10.1074/jbc.M205348200. Epub 2002 Aug 1.
A novel human connexin gene (GJA11) was cloned from a genomic library. The open reading frame encoded a hypothetical protein of 294 amino acid residues with a predicted molecular mass of 31,933, hence referred to as connexin-31.9 (Cx31.9) or alpha 11 connexin. A clone in GenBank containing the Cx31.9 gene localized to chromosome 17q21.2. Northern analysis of Cx31.9 showed a major 4.4-kilobase transcript, which was expressed at varying levels in all tissues analyzed. Two monoclonal antibodies generated against different domains of Cx31.9 recognized a 30-33-kDa protein from cells overexpressing Cx31.9. Immunofluorescence of overexpressing cells indicated the presence of Cx31.9 between adjacent cells, consistent with its localization to gap junctions. Double voltage clamp analyses of Cx31.9-overexpressing cells, and of paired Xenopus oocytes injected with Cx31.9 cRNA, demonstrated junctional currents indicative of gap junction channel formation. In contrast to previously characterized connexins, Cx31.9 showed no voltage-dependent gating within a physiologically relevant range. Cx31.9 was detected in human tissues by immunoblot analysis, and immunofluorescence localized Cx31.9 expression to vascular smooth muscle cells. Furthermore, it was demonstrated that Cx31.9 interacted with ZO-1. Thus, Cx31.9 represents a novel connexin gene that in vivo generates a protein with unique voltage gating properties.
从基因组文库中克隆出一种新的人类连接蛋白基因(GJA11)。开放阅读框编码一种含有294个氨基酸残基的假定蛋白质,预测分子量为31933,因此被称为连接蛋白-31.9(Cx31.9)或α11连接蛋白。GenBank中一个包含Cx31.9基因的克隆定位于染色体17q21.2。对Cx31.9的Northern分析显示一个主要的4.4千碱基转录本,在所有分析的组织中以不同水平表达。针对Cx31.9不同结构域产生的两种单克隆抗体识别来自过表达Cx31.9细胞的一种30 - 33 kDa蛋白质。过表达细胞的免疫荧光表明相邻细胞间存在Cx31.9,与其定位于缝隙连接一致。对过表达Cx31.9的细胞以及注射了Cx31.9 cRNA的成对非洲爪蟾卵母细胞进行双电压钳分析,证明了表明缝隙连接通道形成的连接电流。与先前鉴定的连接蛋白不同,Cx31.9在生理相关范围内未显示电压依赖性门控作用。通过免疫印迹分析在人体组织中检测到Cx31.9,免疫荧光将Cx31.9的表达定位于血管平滑肌细胞。此外,证明了Cx31.9与紧密连接蛋白1(ZO - 1)相互作用。因此,Cx31.9代表一种新的连接蛋白基因,其在体内产生具有独特电压门控特性的蛋白质。