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Crystal structure of human chondroadherin: solving a difficult molecular-replacement problem usingde novomodels

Authors :
Viveka Tillgren
Anders Aspberg
Derek T. Logan
Sebastian Rämisch
Anna Pramhed
Source :
Acta Crystallographica Section D Structural Biology. 73:53-63
Publication Year :
2017
Publisher :
International Union of Crystallography (IUCr), 2017.

Abstract

Chondroadherin (CHAD) is a cartilage matrix protein that mediates the adhesion of isolated chondrocytes. Its protein core is composed of 11 leucine-rich repeats (LRR) flanked by cysteine-rich domains. CHAD makes important interactions with collagen as well as with cell-surface heparin sulfate proteoglycans and α2β1integrins. The integrin-binding site is located in a region of hitherto unknown structure at the C-terminal end of CHAD. Peptides based on the C-terminal human CHAD (hCHAD) sequence have shown therapeutic potential for treating osteoporosis. This article describes a still-unconventional structure solution by phasing withde novomodels, the first of a β-rich protein. Structure determination of hCHAD using traditional, though nonsystematic, molecular replacement was unsuccessful in the hands of the authors, possibly owing to a combination of low sequence identity to other LRR proteins, four copies in the asymmetric unit and weak translational pseudosymmetry. However, it was possible to solve the structure by generating a large number ofde novomodels for the central LRR domain usingRosettaand multiple parallel molecular-replacement attempts usingAMPLE. The hCHAD structure reveals an ordered C-terminal domain belonging to the LRRCT fold, with the integrin-binding motif (WLEAK) being part of a regular α-helix, and suggests ways in which experimental therapeutic peptides can be improved. The crystal structure itself and docking simulations further support that hCHAD dimers form in a similar manner to other matrix LRR proteins.

Details

ISSN :
20597983
Volume :
73
Database :
OpenAIRE
Journal :
Acta Crystallographica Section D Structural Biology
Accession number :
edsair.doi.dedup.....5f87208576497e109b43f5e115529f9a
Full Text :
https://doi.org/10.1107/s205979831601980x