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Protein WISDOM: A Workbench for In silico De novo Design of BioMolecules
Published on: July 25, 2013
Determination of protein global folds using backbone residual dipolar coupling and long-range NOE restraints
Alexander W Giesen1, Steve W Homans, Jonathan Miles Brown
1Astbury Centre for Structural Molecular Biology, School of Biochemistry and Molecular Biology University of Leeds, LS2 9JT UK.
Abstract:
We report the determination of the global fold of human ubiquitin using protein backbone NMR residual dipolar coupling and long-range nuclear Overhauser effect (NOE) data as conformational restraints. Specifically, by use of a maximum of three backbone residual dipolar couplings per residue (Ni-H N i, Ni-C'(i-1), H N i - C'(i-1)) in two tensor frames and only backbone H N -H N NOEs, a global fold of ubiquitin can be derived with a backbone root-mean-square deviation of 1.4 A with respect to the crystal structure. This degree of accuracy is more than adequate for use in databases of structural motifs, and suggests a general approach for the determination of protein global folds using conformational restraints derived only from backbone atoms.
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