Cascio M, Kumar N M, Safarik R, Gilula N B
Department of Cell Biology, Scripps Research Institute, La Jolla, California 92037, USA.
J Biol Chem. 1995 Aug 4;270(31):18643-8. doi: 10.1074/jbc.270.31.18643.
Enriched subcellular fractions of double membrane gap junctions (plaques) from rat livers were treated under reducing conditions with high salt and non-ionic detergent concentrations at high pH to obtain a preparation of structural 80-90 A complexes of oligomers (connexons). The isolated oligomers were chromatographically purified, and subsequently characterized immunologically, morphologically by electron microscopy, hydrodynamically by gel filtration and ultracentrifugation, spectroscopically by circular dichroism, and chemically via cross-linking studies. The physical characteristics of these isolated gap junction complexes were compared to those of native membrane-bound gap junctions in rat liver. These analyses indicate that the isolated complex (connexon) principally contains a hexameric arrangement of gap junction protein to form a single membrane hemi-channel.
用高盐和高pH值的非离子去污剂浓度在还原条件下处理来自大鼠肝脏的富含双膜间隙连接(斑块)的亚细胞级分,以获得寡聚体(连接子)的80 - 90埃结构复合物制剂。分离的寡聚体通过色谱法纯化,随后通过免疫、电子显微镜形态学、凝胶过滤和超速离心的流体动力学、圆二色光谱学以及交联研究进行化学表征。将这些分离的间隙连接复合物的物理特性与大鼠肝脏中天然膜结合间隙连接的特性进行比较。这些分析表明,分离的复合物(连接子)主要包含间隙连接蛋白的六聚体排列,以形成单个膜半通道。