Pfahnl A, Zhou X W, Werner R, Dahl G
Department of Physiology and Biophysics, University of Miami School of Medicine, FL 33101, USA.
Pflugers Arch. 1997 Apr;433(6):773-9. doi: 10.1007/s004240050344.
Connexins are the subunits of gap junction channels which connect neighboring cells. With the exception of lens connexins, they usually do not form open hemichannels in the cell membrane of single cells. Here we describe a chimeric connexin consisting of cx32 where the first extracellular loop sequence is replaced by the corresponding cx43 sequence. This chimera, cx32E143, forms conventional gap junction channels in the paired oocyte assay. In addition cx32E143 induces a membrane conductance in single oocytes. This membrane conductance is voltage dependent and is similarly sensitive to CO2 as are gap junction channels formed by the chimera or by wild-type cx32. These data suggest that cx32E143 forms patent hemichannels in the plasma membrane of single oocytes. This conclusion is further supported by the observation that oocytes expressing cx32E143 take up from the bath medium tracer molecules known to pass through gap junction channels.
连接蛋白是连接相邻细胞的间隙连接通道的亚基。除晶状体连接蛋白外,它们通常不会在单细胞的细胞膜中形成开放的半通道。在这里,我们描述了一种嵌合连接蛋白,它由cx32组成,其第一个细胞外环序列被相应的cx43序列取代。这种嵌合体cx32E143在双卵细胞试验中形成传统的间隙连接通道。此外,cx32E143在单个卵细胞中诱导膜电导。这种膜电导是电压依赖性的,并且对二氧化碳的敏感性与由该嵌合体或野生型cx32形成的间隙连接通道相似。这些数据表明,cx32E143在单个卵细胞的质膜中形成了有功能的半通道。表达cx32E143的卵细胞从浴液介质中摄取已知可通过间隙连接通道的示踪分子,这一观察结果进一步支持了这一结论。