Oh S Y, Dupont E, Madhukar B V, Briand J P, Chang C C, Beyer E, Trosko J E
Department of Pediatrics/Human Development, Michigan State University, East Lansing 48824.
Eur J Cell Biol. 1993 Apr;60(2):250-5.
To understand the mechanism(s) regulating gap junctional communication, we isolated gap junctional intercellular communication-deficient (GJIC-) mutant clones of a rat liver epithelial cell line, WB F-344, which is hypoxanthine-guanine phosphoribosyl transferase deficient (HGPRT-). The cells were exposed to a mutagenesis regimen and cocultured with the wild type HGPRT+ cells. Four GJIC- and one positive clones were characterized in the present study. Northern analysis of RNA isolated from both mutant and parental cells showed a single RNA species of about 3.0 kb which hybridized to connexin43 (Cx43) cDNA. Western blot analysis confirmed the expression of this junctional protein in all these clones. However, in the GJIC- clones the slowest migrating band corresponding to a hyperphosphorylated form, P2, of Cx43 protein (approximately 46 kDa) was absent suggesting that loss of this phosphorylated form of Cx43 may be involved in the failure of the mutants to establish cell-cell communication. Immunofluorescence analysis of the mutants did not reveal any differences in the distribution and localization of Cx43 between GJIC+ and GJIC- clones suggesting that the loss of phosphorylation did not affect the membrane association of this protein. Taken together, these data suggest that one mechanism for the loss of communication in these GJIC- mutants may be the consequence of a change in the intrinsic phosphorylation state of Cx43 protein.
为了解调节间隙连接通讯的机制,我们分离了大鼠肝上皮细胞系WB F-344的间隙连接细胞间通讯缺陷(GJIC-)突变克隆,该细胞系缺乏次黄嘌呤-鸟嘌呤磷酸核糖转移酶(HGPRT-)。将细胞暴露于诱变方案并与野生型HGPRT+细胞共培养。本研究对四个GJIC-克隆和一个阳性克隆进行了表征。对从突变细胞和亲本细胞中分离的RNA进行Northern分析,显示出一种约3.0 kb的单一RNA物种,它与连接蛋白43(Cx43)cDNA杂交。蛋白质印迹分析证实了所有这些克隆中这种连接蛋白的表达。然而,在GJIC-克隆中,对应于Cx43蛋白超磷酸化形式P2(约46 kDa)的迁移最慢的条带不存在,这表明Cx43这种磷酸化形式的缺失可能与突变体无法建立细胞间通讯有关。对突变体的免疫荧光分析未揭示GJIC+和GJIC-克隆之间Cx43在分布和定位上的任何差异,这表明磷酸化的缺失并不影响该蛋白与膜的结合。综上所述,这些数据表明这些GJIC-突变体通讯丧失的一种机制可能是Cx43蛋白内在磷酸化状态改变的结果。