4.8 Article

Structural basis of Dscam isoform specificity

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NATURE
卷 449, 期 7161, 页码 487-U12

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NATURE PUBLISHING GROUP
DOI: 10.1038/nature06147

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The Dscam gene gives rise to thousands of diverse cell surface receptors(1) thought to provide homophilic and heterophilic recognition specificity for neuronal wiring(2-4) and immune responses(5). Mutually exclusive splicing allows for the generation of sequence variability in three immunoglobulin ecto-domains, D2, D3 and D7. We report X-ray structures of the amino-terminal four immunoglobulin domains (D1-D4) of two distinct Dscam isoforms. The structures reveal a horseshoe configuration, with variable residues of D2 and D3 constituting two independent surface epitopes on either side of the receptor. Both isoforms engage in homo-dimerization coupling variable domain D2 with D2, and D3 with D3. These interactions involve symmetric, antiparallel pairing of identical peptide segments from epitope I that are unique to each isoform. Structure-guided mutagenesis and swapping of peptide segments confirm that epitope I, but not epitope II, confers homophilic binding specificity of full-length Dscam receptors. Phylogenetic analysis shows strong selection of matching peptide sequences only for epitope I. We propose that peptide complementarity of variable residues in epitope I of Dscam is essential for homophilic binding specificity.

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