Crystal Structure of the cis-Dimer of Nectin-1: implications for the architecture of cell-cell junctions.

J Biol Chem

Laboratory of Supramolecular Crystallography, Research Center for Structural and Functional Proteomics, Institute for Protein Research, Osaka University, Suita 565-0871, Japan.

Published: April 2011

AI Article Synopsis

  • In multicellular organisms, cells use cell adhesion molecules like nectins to stick to each other, which helps organize tissues.
  • Nectins dimerize on the same cell (cis-dimerization) before connecting to neighboring cells (trans-dimerization), with specific Ig-like domains responsible for these interactions.
  • This study reveals the crystal structure of nectin-1, showing it forms a V-shaped cis-dimer through its first Ig-like domain and identifies key residues necessary for this process, challenging previous understandings of nectin interactions.

Article Abstract

In multicellular organisms, cells are interconnected by cell adhesion molecules. Nectins are immunoglobulin (Ig)-like cell adhesion molecules that mediate homotypic and heterotypic cell-cell adhesion, playing key roles in tissue organization. To mediate cell-cell adhesion, nectin molecules dimerize in cis on the surface of the same cell, followed by trans-dimerization of the cis-dimers between the neighboring cells. Previous cell biological studies deduced that the first Ig-like domain of nectin and the second Ig-like domain are involved in trans-dimerization and cis-dimerization, respectively. However, to understand better the steps involved in nectin adhesion, the structural basis for the dimerization of nectin must be determined. In this study, we determined the first crystal structure of the entire extracellular region of nectin-1. In the crystal, nectin-1 formed a V-shaped homophilic dimer through the first Ig-like domain. Structure-based site-directed mutagenesis of the first Ig-like domain identified four essential residues that are involved in the homophilic dimerization. Upon mutating the four residues, nectin-1 significantly decreased cis-dimerization on the surface of cultured cells and abolished the homophilic and heterophilic adhesion activities. These results indicate that, in contrast with the previous notion, our structure represents a cis-dimer. Thus, our findings clearly reveal the structural basis for the cis-dimerization of nectins through the first Ig-like domains.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3069466PMC
http://dx.doi.org/10.1074/jbc.M110.197368DOI Listing

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