School of Bioscience, Indian Institute of Technology Kharagpur, Kharagpur, West Bengal, India.
School of Energy Science and Engineering, Indian Institute of Technology Kharagpur, Kharagpur, West Bengal, India.
Proteins. 2018 Nov;86(11):1157-1164. doi: 10.1002/prot.25596. Epub 2018 Sep 29.
Cell adhesion molecules such as nectins and cadherins play important role in the formation of adherens junction. While nectins interact through their extracellular domains in both homophilic and heterophilic manner among themselves, extracellular domains of cadherins participate only in homophilic fashion to mediate cell-cell adhesion. It is well established that nectins recruit cadherins in the adhesion sites through an interplay of adaptor molecules in the cytoplasmic side thereby increasing the effective concentration of both the adhesion molecules on the cell surface. This study provides molecular and structural bases of the novel interaction between extracellular domains of nectin-2 and N-cadherin, by which nectins can also recruit cadherins at the site of adherens junction through an adaptor-independent mechanism. Surface plasmon resonance study demonstrates that nectin-2 can directly recognize N-cadherin with a K of 3.5 ± 0.6 μM which is physiologically relevant considering the affinities between other cell adhesion molecules including cadherin dimerization. Furthermore, structural analysis of currently available homodimeric structures of both nectin-2 and N-cadherin followed by molecular docking as well as complementary mutagenesis studies revealed the binding interface of this novel interaction.
细胞黏附分子,如 nectin 和 cadherin,在黏着连接的形成中发挥重要作用。nectin 通过其细胞外结构域以同种和异种相互作用的方式相互作用,而 cadherin 的细胞外结构域仅以同种方式参与介导细胞-细胞黏附。已经证实 nectin 通过细胞内侧衔接分子的相互作用在黏附部位募集 cadherin,从而增加细胞表面两种黏附分子的有效浓度。本研究通过 nectin-2 和 N-cadherin 的细胞外结构域之间的新型相互作用提供了分子和结构基础,通过这种相互作用,nectin 还可以通过非衔接子依赖机制在黏着连接部位募集 cadherin。表面等离子体共振研究表明,nectin-2 可以直接识别 N-cadherin,其 Kd 值为 3.5±0.6 μM,考虑到其他细胞黏附分子(包括 cadherin 二聚化)之间的亲和力,这在生理上是相关的。此外,对目前可用的 nectin-2 和 N-cadherin 的同源二聚体结构进行结构分析,然后进行分子对接以及互补突变研究,揭示了这种新型相互作用的结合界面。