Rahman S, Evans W H
Laboratory of Protein Structure, National Institute of Medical Research, Mill Hill, London, UK.
J Cell Sci. 1991 Nov;100 ( Pt 3):567-78. doi: 10.1242/jcs.100.3.567.
A range of anti-peptide antibodies directed towards selected amino acid sequences of connexin32 was prepared and characterised. The site-directed antibodies that identified connexin32 were used to study by immunolocalization and by proteolytic treatment of intact and split gap junctions the arrangement of the protein in the membrane. These studies reinforce models of connexin topography in which the polypeptide traverses the junctional membrane four times, with the amino and carboxyl termini cytoplasmically located. The four transmembrane domains were shown to be linked by two extracellular loops with a single intracellular loop connecting the second and third transmembrane domains. Evidence is presented to show that the two extracellular domains of connexin32, which are important for intercellular adhesion and the insulated bridging of the extracellular space by channels allowing cell-cell communication across the gap junction, are connected by disulphide bond(s). The studies lead to a more detailed two-dimensional model of connexin32 in the membrane, incorporating the favoured theoretical arrangement of disulphide bonds at the extracellular domain of connexin32.
制备并表征了一系列针对连接蛋白32特定氨基酸序列的抗肽抗体。通过免疫定位以及对完整和分离的缝隙连接进行蛋白水解处理,利用鉴定连接蛋白32的定点抗体研究了该蛋白在膜中的排列方式。这些研究强化了连接蛋白拓扑结构模型,即多肽穿越连接膜四次,氨基和羧基末端位于细胞质中。结果表明,四个跨膜结构域由两个细胞外环连接,一个细胞内环连接第二和第三跨膜结构域。有证据表明,连接蛋白32的两个细胞外结构域通过二硫键相连,这两个结构域对于细胞间黏附以及通过允许细胞间通过缝隙连接进行通讯的通道对细胞外空间进行绝缘桥接非常重要。这些研究得出了连接蛋白32在膜中的更详细二维模型,其中纳入了连接蛋白32细胞外结构域中二硫键的首选理论排列方式。