Gemel Joanna, Valiunas Virginijus, Brink Peter R, Beyer Eric C
Department of Pediatrics, Section of Hematology/Oncology and Stem Cell Transplantation, University of Chicago, IL 60637-1470, USA.
J Cell Sci. 2004 May 15;117(Pt 12):2469-80. doi: 10.1242/jcs.01084. Epub 2004 May 5.
Many cells contain two (or more) gap junction proteins that are able to oligomerize with each other to form heteromeric gap junction channels and influence the properties of intercellular communication. Cx26 and Cx43 are found together in a number of cell types, but previous data have suggested that they might not form heteromeric connexons. We studied the possible interactions of these connexins by co-expression in three different cell lines. Analysis of N2aCx26/Cx43 cell pairs by double whole-cell patch-clamp methods showed that these cells were coupled, but contained only a small number of sizes of single channels consistent with those formed by homomeric Cx26 or Cx43 channels. Immunofluorescence studies showed that both connexins localized to appositional membranes, but in largely distinct domains. Analysis of Triton X-100-solubilized connexons from co-expressing cells by centrifugation through sucrose gradients or by affinity purification using a Ni-NTA column showed no evidence of mixing of Cx26 and Cx43. These results contrast with our observations in cells co-expressing other connexins with Cx43 and suggest that Cx26 and Cx43 do not form heteromeric hemichannels. Moreover, the incorporation of Cx26 and Cx43 into oligomers and into the membrane were similarly affected by treatment of co-expressing cells with brefeldin A or nocodazole, suggesting that the lack of mixing is due to incompatibility of these connexins, not to differences in biosynthetic trafficking.
许多细胞含有两种(或更多种)间隙连接蛋白,它们能够彼此寡聚化形成异源间隙连接通道,并影响细胞间通讯的特性。在多种细胞类型中同时发现了Cx26和Cx43,但先前的数据表明它们可能不会形成异源连接子。我们通过在三种不同的细胞系中共表达来研究这些连接蛋白之间可能的相互作用。用双全细胞膜片钳方法分析N2aCx26/Cx43细胞对,结果显示这些细胞是耦合的,但仅含有少量与同源Cx26或Cx43通道形成的单通道大小一致的通道。免疫荧光研究表明,两种连接蛋白都定位于相邻的细胞膜,但大部分位于不同的区域。通过蔗糖梯度离心或使用镍-氮三乙酸柱进行亲和纯化,对共表达细胞中经 Triton X-100 溶解的连接子进行分析,结果显示没有Cx26和Cx43混合的证据。这些结果与我们在共表达其他连接蛋白和Cx43的细胞中的观察结果形成对比,表明Cx26和Cx43不会形成异源半通道。此外,用布雷菲德菌素A或诺考达唑处理共表达细胞,对Cx26和Cx43掺入寡聚体和细胞膜的影响相似,这表明缺乏混合是由于这些连接蛋白不相容,而不是生物合成运输的差异。