Direct NOE refinement of biomolecular structures using 2D NMR data.

Publication date

1991-09-01

Authors

Bonvin, Alexandre M.J.J.ORCID 0000-0001-7369-1322ISNI 0000000396501354
Boelens, R.ISNI 0000000389597108
Kaptein, R.ISNI 000000009503764X

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Document Type

Article
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Abstract

A set of computer programs called DINOSAUR has been developed, which allows the refinement of biomolecular structures directly from 2D NOE intensities. The NOE restraining potential implemented emphasises the weak intensities corresponding to larger distances which are more likely to determine the three-dimensional structure. An approximation based on a two-spin approximation is proposed for the gradient of the NOE intensities instead of the exact solution which is extremely time-consuming. The DINOSAUR routines have been implemented in various refinement programs (Distance bound Driven Dynamics, Molecular Dynamics and Energy Minimisation) and tested on an eight-residue model peptide.

Keywords

protein, article, chemical structure, chemistry, software, mathematics, methodology, nuclear magnetic resonance spectroscopy, protein conformation, Taverne

Citation

Bonvin, A M, Boelens, R & Kaptein, R 1991, 'Direct NOE refinement of biomolecular structures using 2D NMR data.', Journal of Biomolecular NMR, vol. 1, no. 3, pp. 305-309. https://doi.org/10.1007/BF01875523