4.5 Article

Molecular design principles underlying β-strand swapping in the adhesive dimerization of cadherins

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NATURE STRUCTURAL & MOLECULAR BIOLOGY
卷 18, 期 6, 页码 693-U92

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NATURE PUBLISHING GROUP
DOI: 10.1038/nsmb.2051

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  1. US National Science Foundation [MCB-0918535]
  2. National Institutes of Health [R01 GM062270-07]
  3. Direct For Biological Sciences
  4. Div Of Molecular and Cellular Bioscience [918535] Funding Source: National Science Foundation

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Cell adhesion by classical cadherins is mediated by dimerization of their EC1 domains through the 'swapping' of N-terminal beta-strands. We use molecular simulations, measurements of binding affinities and X-ray crystallography to provide a detailed picture of the structural and energetic factors that control the adhesive dimerization of cadherins. We show that strand swapping in EC1 is driven by conformational strain in cadherin monomers that arises from the anchoring of their short N-terminal strand at one end by the conserved Trp2 and at the other by ligation to Ca2+ ions. We also demonstrate that a conserved proline-proline motif functions to avoid the formation of an overly tight interface where affinity differences between different cadherins, crucial at the cellular level, are lost. We use these findings to design site-directed mutations that transform a monomeric EC2-EC3 domain cadherin construct into a strand-swapped dimer.

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