Suppr超能文献

培养的新生大鼠心肌细胞间缝隙连接的形成及功能相互作用:一项相关的生理学和超微结构研究。

Gap junction formation and functional interaction between neonatal rat cardiocytes in culture: a correlative physiological and ultrastructural study.

作者信息

Rook M B, de Jonge B, Jongsma H J, Masson-Pévet M A

机构信息

Department of Physiology, A.M.C., University of Amsterdam, The Netherlands.

出版信息

J Membr Biol. 1990 Nov;118(2):179-92. doi: 10.1007/BF01868475.

Abstract

The time course of gap junction formation and growth, following contraction synchronization of cardiac myocytes in culture, has been studied in a combined (electro) physiological and ultrastructural study. In cultures of collagenase-dissociated neonatal rat cardiocytes, pairs of spontaneously beating myocytes synchronized their contractions within one beat interval within 2-20 min after they apparently had grown into contact. 45 sec after the first synchronized beat an appreciable junctional region containing several small gap junctions was already present. In the following 30 min, neither the area of individual gap junctions nor their total area increased. 75 min after synchronization both the area of individual gap junctions and their total area had increased by a factor of 10-15 with respect to what was found in the first half hour. In the period between 75 and 300 min again no further increase in gap junctional area was found. In double voltage-clamp experiments, gap junctions between well-coupled cells behaved like ohmic conductors. In poorly coupled cells, in which the number of functional gap-junctional channels was greatly reduced, the remaining channels showed voltage-dependent gating. Their single-channel conductance was 40-50 pS. The electrophysiologically measured junctional conductance agreed well with the conductance calculated from the morphometrically determined gap-junctional area. It is concluded that a rapid initial gap junction formation occurs during the 2-20 min period prior to synchronization by assembly of functional channels from existing channel precursors already present in the cell membranes. It then takes at least another 30 min before the gap-junctional area increases possibly by de novo synthesis or by recruitment from intracellular stores or from nonjunctional membranes, a process completed in the next 45 min.

摘要

在一项结合了(电)生理学和超微结构的研究中,对培养的心肌细胞收缩同步后缝隙连接形成和生长的时间进程进行了研究。在胶原酶解离的新生大鼠心肌细胞培养物中,成对的自发搏动心肌细胞在明显生长接触后的2 - 20分钟内,在一个搏动间期内使它们的收缩同步。在第一次同步搏动后45秒,就已经出现了一个含有几个小缝隙连接的明显连接区域。在接下来的30分钟内,单个缝隙连接的面积及其总面积均未增加。同步后75分钟,单个缝隙连接的面积及其总面积相对于前半小时增加了10 - 15倍。在75至300分钟之间,再次未发现缝隙连接面积有进一步增加。在双电压钳实验中,耦合良好的细胞之间的缝隙连接表现得像欧姆导体。在耦合不良的细胞中,功能性缝隙连接通道的数量大大减少,剩余的通道表现出电压依赖性门控。它们的单通道电导为40 - 50 pS。电生理学测量的连接电导与根据形态学确定的缝隙连接面积计算出的电导非常吻合。得出的结论是,在同步之前的2 - 20分钟内,通过组装细胞膜中已有的通道前体形成功能性通道,快速发生初始缝隙连接形成。然后至少再过30分钟,缝隙连接面积才可能通过从头合成、从细胞内储存库或非连接膜募集而增加,这个过程在接下来的45分钟内完成。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验