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不同特异性细胞黏附分子的互补DNA可诱导培养的S180细胞的细胞形态和边界形成发生变化。

cDNAs of cell adhesion molecules of different specificity induce changes in cell shape and border formation in cultured S180 cells.

作者信息

Matsuzaki F, Mège R M, Jaffe S H, Friedlander D R, Gallin W J, Goldberg J I, Cunningham B A, Edelman G M

机构信息

Rockefeller University, New York 10021.

出版信息

J Cell Biol. 1990 Apr;110(4):1239-52. doi: 10.1083/jcb.110.4.1239.

Abstract

The liver cell adhesion molecule (L-CAM) and N-cadherin or adherens junction-specific CAM (A-CAM) are structurally related cell surface glycoproteins that mediate calcium-dependent adhesion in different tissues. We have isolated and characterized a full-length cDNA clone for chicken N-cadherin and used this clone to transfect S180 mouse sarcoma cells that do not normally express N-cadherin. The transfected cells (S180cadN cells) expressed N-cadherin on their surfaces and resembled S180 cells transfected with L-CAM (S180L cells) in that at confluence they formed an epithelioid sheet and displayed a large increase in the number of adherens and gap junctions. In addition, N-cadherin in S180cadN cells, like L-CAM in S180L cells, accumulated at cellular boundaries where it was colocalized with cortical actin. In S180L cells and S180cadN cells, L-CAM and N-cadherin were seen at sites of adherens junctions but were not restricted to these areas. Adhesion mediated by either CAM was inhibited by treatment with cytochalasin D that disrupted the actin network of the transfected cells. Despite their known structural similarities, there was no evidence of interaction between L-CAM and N-cadherin. Doubly transfected cells (S180L/cadN) also formed epithelioid sheets. In these cells, both N-cadherin and L-CAM colocalized at areas of cell contact and the presence of antibodies to both CAMs was required to disrupt the sheets of cells. Studies using divalent antibodies to localize each CAM at the cell surface or to perturb their distributions indicated that in the same cell there were no interactions between L-CAM and N-cadherin molecules. These data suggest that the Ca(++)-dependent CAMs are likely to play a critical role in the maintenance of epithelial structures and support a model for the segregation of CAM mediated binding. They also provide further support for the so-called precedence hypothesis that proposes that expression and homophilic binding of CAMs are necessary for formation of junctional structures in epithelia.

摘要

肝细胞黏附分子(L-CAM)和N-钙黏着蛋白或黏附连接特异性细胞黏附分子(A-CAM)是结构相关的细胞表面糖蛋白,它们介导不同组织中的钙依赖性黏附。我们分离并鉴定了鸡N-钙黏着蛋白的全长cDNA克隆,并使用该克隆转染通常不表达N-钙黏着蛋白的S180小鼠肉瘤细胞。转染后的细胞(S180cadN细胞)在其表面表达N-钙黏着蛋白,并且在汇合时形成上皮样片层,且黏附连接和缝隙连接的数量大幅增加,这一点与用L-CAM转染的S180细胞(S180L细胞)相似。此外,S180cadN细胞中的N-钙黏着蛋白,就像S180L细胞中的L-CAM一样,聚集在细胞边界处,并与皮质肌动蛋白共定位。在S180L细胞和S180cadN细胞中,L-CAM和N-钙黏着蛋白出现在黏附连接部位,但并不局限于这些区域。用细胞松弛素D处理破坏转染细胞的肌动蛋白网络后,两种细胞黏附分子介导的黏附均受到抑制。尽管已知它们在结构上有相似性,但没有证据表明L-CAM和N-钙黏着蛋白之间存在相互作用。双重转染的细胞(S180L/cadN)也形成上皮样片层。在这些细胞中,N-钙黏着蛋白和L-CAM都在细胞接触区域共定位,并且需要同时存在针对这两种细胞黏附分子的抗体才能破坏细胞片层。使用二价抗体在细胞表面定位每种细胞黏附分子或扰乱其分布的研究表明,在同一细胞中,L-CAM和N-钙黏着蛋白分子之间不存在相互作用。这些数据表明,钙依赖性细胞黏附分子可能在上皮结构的维持中起关键作用,并支持细胞黏附分子介导的结合分离模型。它们还为所谓的优先假说提供了进一步支持,该假说提出细胞黏附分子的表达和同嗜性结合是上皮细胞中连接结构形成所必需的。

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