Moore L K, Beyer E C, Burt J M
Department of Physiology, University of Arizona, Tucson 85724.
Am J Physiol. 1991 May;260(5 Pt 1):C975-81. doi: 10.1152/ajpcell.1991.260.5.C975.
Recent evidence suggest that coordination of blood flow in the microcirculation involves cell-to-cell coupling via gap junctions. In this study, using A7r5 cells as a model of vascular smooth muscle, we have characterized the gap junctions in terms of the unitary conductances of the observed channels, the responses to second messengers, and subunit protein composition. The cells were typically well coupled several hours after plating, with junctional conductances on the order 20-40 nS. Channels with mean conductances of 36 and 89 pS were observed in low-conductance cell pairs and in cell pairs whose macroscopic conductance was reduced by exposure to halothane. Connexin43 was the only known gap junction sequence detected by Northern blots (low and high stringency), immunoblots, or immunohistochemical studies. Junctional conductance was reduced 15% by 8-bromoadenosine 3',5'-cyclic monophosphate; 8-bromoguanosine 3',5'-cyclic monophosphate had no effect. The results suggest that connexin43 can form stable channels of at least two distinct conductances and gap junctions with differing responses to second messengers.
最近的证据表明,微循环中血流的协调涉及通过缝隙连接的细胞间偶联。在本研究中,我们以A7r5细胞作为血管平滑肌模型,从观察到的通道的单位电导、对第二信使的反应以及亚基蛋白质组成方面对缝隙连接进行了表征。细胞在接种后数小时通常耦合良好,连接电导约为20 - 40 nS。在低电导细胞对以及宏观电导因暴露于氟烷而降低的细胞对中,观察到平均电导为36和89 pS的通道。通过Northern印迹(低严谨度和高严谨度)、免疫印迹或免疫组织化学研究检测到,连接蛋白43是唯一已知的缝隙连接序列。8 - 溴腺苷3',5'-环磷酸单酯可使连接电导降低15%;8 - 溴鸟苷3',5'-环磷酸单酯则无作用。结果表明,连接蛋白43可形成至少两种不同电导的稳定通道以及对第二信使有不同反应的缝隙连接。