Tomschy A, Fauser C, Landwehr R, Engel J
Abteilung für Biophysikalische Chemie, Biozentrum, Universität Basel, Switzerland.
EMBO J. 1996 Jul 15;15(14):3507-14.
Cluster formation of E-cadherin on the cell surface is believed to be of major importance for cell-cell adhesion. To mimic this process the extracellular part of mouse E-cadherin (ECAD) was recombinantly fused to the assembly domain of rat cartilage oligomeric matrix protein (COMP), resulting in the chimeric protein ECAD-COMP. The COMP domain formed a five-stranded alpha-helical coiled-coil. This enabled the formation of a pentameric ECAD with bundled C-termini and free N-termini. The pentameric protein construct ECAD-COMP and the monomeric ECAD were expressed in human embryonal kidney 293 cells. Electron microscopy, analytical ultracentrifugation, solid phase binding and cell attachment assays revealed that pentamers showed strong self-association and cell attachment, whereas monomers exhibited no activity. At the high internal concentration in the pentamer the N-terminal EC1 domains of two E-cadherin arms interact to form a ring-like structure. Then the paired domains interact with a corresponding pair from another pentamer. None of the four other extracellular domains of E-cadherin is involved in this interaction. Based on these results, an in vivo mechanism is proposed whereby two N-terminal domains of neighbouring E-cadherins at the cell surface first form a pair, which binds with high affinity to a similar complex on another cell. The strong dependence of homophilic interactions on C-terminal clustering points towards a regulation of E-cadherin mediated cell-cell adhesion via lateral association.
E-钙黏蛋白在细胞表面形成簇被认为对细胞间黏附至关重要。为模拟这一过程,将小鼠E-钙黏蛋白(ECAD)的细胞外部分与大鼠软骨寡聚基质蛋白(COMP)的组装结构域进行重组融合,产生嵌合蛋白ECAD-COMP。COMP结构域形成了一个五链α-螺旋卷曲螺旋。这使得能够形成具有成束C末端和游离N末端的五聚体ECAD。五聚体蛋白构建体ECAD-COMP和单体ECAD在人胚肾293细胞中表达。电子显微镜、分析超速离心、固相结合和细胞附着试验表明,五聚体表现出强烈的自缔合和细胞附着,而单体则无活性。在五聚体的高内部浓度下,两个E-钙黏蛋白臂的N末端EC1结构域相互作用形成环状结构。然后,配对的结构域与另一个五聚体的相应配对结构域相互作用。E-钙黏蛋白的其他四个细胞外结构域均不参与这种相互作用。基于这些结果,提出了一种体内机制,即细胞表面相邻E-钙黏蛋白的两个N末端结构域首先形成一对,然后以高亲和力与另一个细胞上的类似复合物结合。同源相互作用对C末端簇的强烈依赖性表明,E-钙黏蛋白介导的细胞间黏附是通过侧向缔合进行调节的。