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Enhancement of bound-state residual dipolar couplings: Conformational analysis of lactose bound to Galectin-3

Author

Summary, in English

Residual dipolar couplings (RDCs) have proven to be a valuable NMR tool that can provide long-range constraints for molecular structure determination. The constraints are orientational in nature and are, thus, highly complementary to conventional distance constraints from NOE data. This complementarity would seem to extend to the study of the geometry of ligands bound to proteins. However, unlike transferred NOEs, where collection, even with a large excess of free ligand, results in measurements dominated by bound contributions, RDCs of exchanging ligands can be dominated by free-state contributions. Here we present a strategy for enhancement of RDCs from bound states that is based on specifically enhancing the alignment of the protein to which a ligand will bind. The protein is modified by addition of a hydrophobic alkyl tail that anchors it to the bicelles that are a part of the ordering medium needed for RDC measurement. As an illustration, we have added a propyl chain to the C terminus of the carbohydrate recognition domain of the protein, Galectin-3, and report enhanced RDCs that prove consistent with known bound-ligand geometries for this protein.

Publishing year

2006

Language

English

Pages

1780-1790

Publication/Series

Protein Science

Volume

15

Issue

7

Document type

Journal article

Publisher

The Protein Society

Topic

  • Microbiology in the medical area
  • Immunology in the medical area

Keywords

  • transferred NOE
  • NMR
  • ligand conformation
  • rDC
  • lectin
  • carbohydrate
  • binding

Status

Published

ISBN/ISSN/Other

  • ISSN: 1469-896X