Frenzel E M, Johnson R G
Department of Genetics and Cell Biology, University of Minnesota, St. Paul 55108, USA.
Dev Biol. 1996 Oct 10;179(1):1-16. doi: 10.1006/dbio.1996.0237.
Intercellular communication mediated by gap junctions is important for tissue homeostasis in the avascular lens, and extensive areas of gap junctions form between fiber cells during fiber cell differentiation and lens development. We examined the role of the calcium-dependent cell adhesion molecule, N-cadherin, in the process of gap junction formation between fiber cells. Lentoids, multicellular structures with characteristics of differentiated fiber cells, were isolated from embryonic chick lens cultures and subsequently paired to provide an in vitro model of fiber cell interactions. Gap junction formation between cells of paired lentoids was monitored by observing the lentoid-to-lentoid transfer of fluorescent dyes, either calcein or Lucifer yellow, over a time course of up to 48 hr. Dye transfer between lentoids was inhibited upon the addition to the medium of Fab fragments (100-622 microgram/ml) of a monoclonal antibody specific for N-cadherin, and also by the reduction of extracellular calcium in the incubation medium. However, the addition of Fab fragments (100-1500 microgram/ml) of an antibody to a fiber-cell-specific integral membrane protein, MIP, did not change the time course nor extent of dye transfer between lentoids. Our results, using cultured embryonic cells, extend those from previous studies with cell lines and transfected cells. We conclude that cadherin interactions facilitate the formation of gap junctions between embryonic lens fiber cells, by the stabilization of membrane appositions and/or by the generation of an intracellular signal(s).
由缝隙连接介导的细胞间通讯对于无血管晶状体中的组织稳态很重要,并且在纤维细胞分化和晶状体发育过程中,纤维细胞之间会形成广泛的缝隙连接区域。我们研究了钙依赖性细胞粘附分子N-钙粘蛋白在纤维细胞间缝隙连接形成过程中的作用。从胚胎鸡晶状体培养物中分离出具有分化纤维细胞特征的多细胞结构类晶状体,随后将其配对以提供纤维细胞相互作用的体外模型。通过观察荧光染料(钙黄绿素或路西法黄)在长达48小时的时间进程中从类晶状体到类晶状体的转移,监测配对类晶状体细胞之间缝隙连接的形成。向培养基中添加针对N-钙粘蛋白的单克隆抗体的Fab片段(100 - 622微克/毫升)以及降低孵育培养基中的细胞外钙,均可抑制类晶状体之间的染料转移。然而,向培养基中添加针对纤维细胞特异性整合膜蛋白MIP的抗体的Fab片段(100 - 1500微克/毫升),并不会改变类晶状体之间染料转移的时间进程和程度。我们使用培养的胚胎细胞所获得的结果扩展了先前对细胞系和转染细胞研究的结果。我们得出结论,钙粘蛋白相互作用通过稳定膜附着和/或通过产生细胞内信号,促进胚胎晶状体纤维细胞之间缝隙连接的形成。