Protein structure determination by combining sparse NMR data with evolutionary couplings.
Nat Methods. 2015 Jun 29;
Authors: Tang Y, Huang YJ, Hopf TA, Sander C, Marks DS, Montelione GT
Abstract
Accurate determination of protein structure by NMR spectroscopy is challenging for larger proteins, for which experimental data are often incomplete and ambiguous. Evolutionary sequence information together with advances in maximum entropy statistical methods provide a rich complementary source of structural constraints. We have developed a hybrid approach (evolutionary coupling-NMR spectroscopy; EC-NMR) combining sparse NMR data with evolutionary residue-residue couplings and demonstrate accurate structure determination for several proteins 6-41 kDa in size.
PMID: 26121406 [PubMed - as supplied by publisher]
Protein structure determination by combining sparse NMR data with evolutionary ... - Nature.com
Protein structure determination by combining sparse NMR data with evolutionary ... - Nature.com
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Protein structure determination by combining sparse NMR data with evolutionary ...
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Accurate determination of protein structure by NMR spectroscopy is challenging for larger proteins, for which experimental data are often incomplete and ambiguous. Evolutionary sequence information together with advances in...
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Combining NMR and EPR Methods for Homodimer Protein Structure Determination
There is a general need to develop more powerful and more robust methods for structural characterization of homodimers, homo-oligomers, and multiprotein complexes using solution-state NMR methods. In recent years, there has been increasing emphasis on integrating distinct and complementary methodologies for structure determination of multiprotein ...