Al-Kurdi Rana, Gulino-Debrac Danielle, Martel Laurence, Legrand Jean-François, Renault Anne, Hewat Elizabeth, Vénien-Bryan Catherine
LIM Institut de Biologie Structurale Jean-Pierre Ebel (CEA-CNRS-Université J. Fourier), 41 rue Jules Horowitz, 38027 Grenoble Cedex 1, France.
J Mol Biol. 2004 Apr 2;337(4):881-92. doi: 10.1016/j.jmb.2004.02.021.
A high concentration of cadherin molecules at cell-cell adhesion sites is believed to be essential for generating strong intercellular junctions. In order to determine the interactions of cadherin domains involved in the early stages of lateral cluster formation on the cell surface, a recombinant fragment encompassing the first four domains of human VE-cadherin with a His-tag at the C terminus (VE-EC1-4-His) was produced. Two-dimensional crystals of VE-EC1-4-His were formed at the air-water interface using conventional lipids modified to contain a Ni(2+)-chelating group, which provides a specific site for interaction with the polyhistidine tag. The VE-EC1-4-His was monomeric at the concentration employed for crystal formation; however, the crystals exhibited a p2 symmetry and the presence of cis-dimer interactions between symmetry-related molecules. The VE-EC1-4-His molecules in the crystalline array have a remarkably compact conformation in contrast to the elongated "string of pearls" conformation seen in the hexameric assembly of VE-EC1-4-His in solution, and as seen in the crystal structure of C-cadherin. These results indicate that VE-cadherin can exist in at least two oligomeric states with different interactions between domains and can adopt highly different conformational states. We suggest that the compact cis-dimeric state may occur on isolated cells and that the compact form may serve to protect the molecule from degradation. As previously proposed we suppose that the trans-hexameric form is involved in intercellular adhesion.
细胞间黏附位点处高浓度的钙黏蛋白分子被认为对于形成强大的细胞间连接至关重要。为了确定参与细胞表面侧向簇形成早期阶段的钙黏蛋白结构域之间的相互作用,制备了一个包含人血管内皮钙黏蛋白前四个结构域且在C端带有His标签的重组片段(VE-EC1-4-His)。使用修饰为含有Ni(2+)螯合基团的常规脂质在气-水界面形成VE-EC1-4-His的二维晶体,该基团为与多聚组氨酸标签的相互作用提供了一个特定位点。VE-EC1-4-His在用于晶体形成的浓度下呈单体状态;然而,晶体呈现p2对称性,且对称相关分子之间存在顺式二聚体相互作用。与溶液中VE-EC1-4-His六聚体组装体中看到的细长“珍珠串”构象以及C-钙黏蛋白晶体结构中看到的构象相比,晶体阵列中的VE-EC1-4-His分子具有非常紧凑的构象。这些结果表明,血管内皮钙黏蛋白可以以至少两种寡聚状态存在,结构域之间具有不同的相互作用,并且可以呈现高度不同的构象状态。我们认为紧凑的顺式二聚体状态可能发生在孤立细胞上,并且这种紧凑形式可能有助于保护分子不被降解。如先前所提出的,我们推测反式六聚体形式参与细胞间黏附。