Issue 6, 2007

Accurate metal-site structures in proteins obtained by combining experimental data and quantum chemistry

Abstract

The use of molecular mechanics calculations to supplement experimental data in standard X-ray crystallography and NMR refinements is discussed and it is shown that structures can be locally improved by the use of quantum chemical calculations. Such calculations can also be used to interpret the structures, e.g. to decide the protonation state of metal-bound ligands. They have shown that metal sites in crystal structures are frequently photoreduced or disordered, which makes the interpretation of the structures hard. Similar methods can be used for EXAFS refinements to obtain a full atomic structure, rather than a set of metal–ligand distances.

Graphical abstract: Accurate metal-site structures in proteins obtained by combining experimental data and quantum chemistry

Article information

Article type
Perspective
Submitted
04 Oct 2006
Accepted
14 Nov 2006
First published
04 Dec 2006

Dalton Trans., 2007, 607-625

Accurate metal-site structures in proteins obtained by combining experimental data and quantum chemistry

U. Ryde, Dalton Trans., 2007, 607 DOI: 10.1039/B614448A

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