Proceedings of the National Academy of Sciences · 2019 · 12 citations · 52 references
Nectin-like (Necl) molecules are Ca<sup>2+</sup>-independent Ig-like transmembrane cell adhesion molecules that participate in junctions between different cell types. The specific cell-cell adhesions mediated by Necl proteins are important in neural development and have been implicated in neurodegenerative diseases. Here, we present the crystal structure of the mouse Necl-4 full ectodomain and the structure of the heterophilic Necl ectodomain complex formed by the mNecl-4 and mNecl-1 ectodomains. We demonstrate that, while the ectodomain of mNecl-4 is monomeric, it forms a stable heterodimer with Ig1 of mNecl-1, with an affinity significantly higher than that observed for self-dimerization of the mNecl-1 ectodomain. We validated our structural characterizations by performing a surface plasmon resonance assay and an Fc fusion protein binding assay in mouse primary dorsal root ganglia neurites and Schwann cells and identified a selection of residues important for heterophilic interactions. Finally, we proposed a model of Necl binding specificity that involves an induced-fit conformational change at the dimerization interface.
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<i>PHENIX</i>: a comprehensive Python-based system for macromolecular structure solution
Paul D. Adams, Pavel V. Afonine, G. Bunkóczi et al. · Acta Crystallographica Section D Biological Crystallography · 2010 · 24.1K citations · Full text
X-ray Crystallography, Structural Bioinformatics, Biomolecular Structure Prediction +14
Wolfgang Kabsch · Acta Crystallographica Section D Biological Crystallography · 2010 · 16.5K citations · Full text