Diez J A, Ahmad S, Evans W H
Department of Medical Biochemistry, University of Wales College of Medicine, Cardiff, UK.
Eur J Biochem. 1999 May;262(1):142-8. doi: 10.1046/j.1432-1327.1999.00343.x.
Guinea-pig liver gap junctions are constructed from approximately equal amounts of connexins 26 and 32. The assembly of these connexins into connexon hemichannels and gap junctions was studied using antibodies specific to each connexin. Intracellular membranes were shown to contain low amounts of connexin 26 relative to connexin 32 in contrast to the equal connexin ratios detected in lateral plasma membranes and gap junctions. Assembly of gap junctions requires oligomerization of connexins into connexons that may be homomeric or heteromeric. Immunoprecipitation using antibodies to connexins 26 and 32 showed that liver gap junctions were heteromeric. A chemical cross-linking procedure showed that connexons solubilized from guinea-pig liver gap junctions were constructed of hexameric assemblies of connexin subunits. The intracellular site of oligomerization of connexins was investigated by velocity sedimentation in sucrose-detergent gradients. Oligomers of connexins 26 and 32 were extensively present in Golgi membranes and oligomeric intermediates, especially of connexin 26, were detected in the endoplasmic reticulum-Golgi intermediate subcellular fraction. Two intracellular trafficking pathways that may account for the delivery of connexin 26 to the plasma membrane and explain the heteromeric nature of liver gap junctions are discussed.
豚鼠肝脏的间隙连接由数量大致相等的连接蛋白26和32构成。利用针对每种连接蛋白的特异性抗体,研究了这些连接蛋白组装成连接子半通道和间隙连接的过程。结果显示,与在外侧质膜和间隙连接中检测到的连接蛋白比例相等的情况相反,内膜中连接蛋白26的含量相对于连接蛋白32较低。间隙连接的组装需要连接蛋白寡聚化形成连接子,连接子可以是同聚体或异聚体。使用针对连接蛋白26和32的抗体进行免疫沉淀表明,肝脏间隙连接是异聚体。化学交联程序表明,从豚鼠肝脏间隙连接中溶解的连接子由连接蛋白亚基的六聚体组装而成。通过在蔗糖-去污剂梯度中进行速度沉降,研究了连接蛋白寡聚化的细胞内位点。连接蛋白26和32的寡聚体大量存在于高尔基体膜中,在内质网-高尔基体中间亚细胞组分中检测到了寡聚中间体,尤其是连接蛋白26的寡聚中间体。本文讨论了两条细胞内运输途径,它们可能解释了连接蛋白26向质膜的转运,并说明了肝脏间隙连接的异聚体性质。