4.3 Article

Sparse labeling of proteins: Structural characterization from long range constraints

Journal

JOURNAL OF MAGNETIC RESONANCE
Volume 241, Issue -, Pages 32-40

Publisher

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.jmr.2013.12.012

Keywords

Protein NMR; Glycoprotein; Sparse labeling; Paramagnetic constraints; Residual dipolar coupling; Ligand docking; NMR assignments

Funding

  1. NIH
  2. Integrated Glycotechnology at the University of Georgia [P41 GM103390]

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Structural characterization of biologically important proteins faces many challenges associated with degradation of resolution as molecular size increases and loss of resolution improving tools such as perdeuteration when non-bacterial hosts must be used for expression. In these cases, sparse isotopic labeling (single or small subsets of amino acids) combined with long range paramagnetic constraints and improved computational modeling offer an alternative. This perspective provides a brief overview of this approach and two discussions of potential applications; one involving a very large system (an Hsp90 homolog) in which perdeuteration is possible and methyl-TROSY sequences can potentially be used to improve resolution, and one involving ligand placement in a glycosylated protein where resolution is achieved by single amino acid labeling (the sialyltransferase, ST6Ga11). This is not intended as a comprehensive review, but as a discussion of future prospects that promise impact on important questions in the structural biology area. (c) 2014 Elsevier Inc. All rights reserved.

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