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A multi-crystal method for extracting obscured crystallographic states from conventionally uninterpretable electron density

Authors :
Nicholas M, Pearce
Tobias, Krojer
Anthony R, Bradley
Patrick, Collins
Radosław P, Nowak
Romain, Talon
Brian D, Marsden
Sebastian, Kelm
Jiye, Shi
Charlotte M, Deane
Frank, von Delft
Source :
Nature Communications
Publication Year :
2016

Abstract

In macromolecular crystallography, the rigorous detection of changed states (for example, ligand binding) is difficult unless signal is strong. Ambiguous (‘weak' or ‘noisy') density is experimentally common, since molecular states are generally only fractionally present in the crystal. Existing methodologies focus on generating maximally accurate maps whereby minor states become discernible; in practice, such map interpretation is disappointingly subjective, time-consuming and methodologically unsound. Here we report the PanDDA method, which automatically reveals clear electron density for the changed state—even from inaccurate maps—by subtracting a proportion of the confounding ‘ground state'; changed states are objectively identified from statistical analysis of density distributions. The method is completely general, implying new best practice for all changed-state studies, including the routine collection of multiple ground-state crystals. More generally, these results demonstrate: the incompleteness of atomic models; that single data sets contain insufficient information to model them fully; and that accuracy requires further map-deconvolution approaches.<br />Building a ligand into a weak region of an electron density map of a protein is a subjective process. Here, the authors present a new method to obtain a clear electron density for a bound ligand based on multi-crystal experiments and 3D background correction.

Subjects

Subjects :
Article

Details

ISSN :
20411723
Volume :
8
Database :
OpenAIRE
Journal :
Nature communications
Accession number :
edsair.pmid..........f2be55b915fc168c129d116202af12ec