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Generalized X-ray and neutron crystallographic analysis: more accurate and complete structures for biological macromolecules.


ABSTRACT: X-ray and neutron crystallographic techniques provide complementary information on the structure and function of biological macromolecules. X-ray and neutron (XN) crystallographic data have been combined in a joint structure-refinement procedure that has been developed using recent advances in modern computational methodologies, including cross-validated maximum-likelihood target functions with gradient-based optimization and simulated annealing. The XN approach for complete (including hydrogen) macromolecular structure analysis provides more accurate and complete structures, as demonstrated for diisopropyl fluorophosphatase, photoactive yellow protein and human aldose reductase. Furthermore, this method has several practical advantages, including the easier determination of the orientation of water molecules, hydroxyl groups and some amino-acid side chains.

SUBMITTER: Adams PD 

PROVIDER: S-EPMC2685734 | biostudies-literature | 2009 Jun

REPOSITORIES: biostudies-literature

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Generalized X-ray and neutron crystallographic analysis: more accurate and complete structures for biological macromolecules.

Adams Paul D PD   Mustyakimov Marat M   Afonine Pavel V PV   Langan Paul P  

Acta crystallographica. Section D, Biological crystallography 20090515 Pt 6


X-ray and neutron crystallographic techniques provide complementary information on the structure and function of biological macromolecules. X-ray and neutron (XN) crystallographic data have been combined in a joint structure-refinement procedure that has been developed using recent advances in modern computational methodologies, including cross-validated maximum-likelihood target functions with gradient-based optimization and simulated annealing. The XN approach for complete (including hydrogen)  ...[more]

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