The explosive increase in the number of published three-dimensionsal structures of macromolecules determined by X-ray analysis places a responsibility on experimentalists, referees and curators of databases to ensure correspondence between the structure parameters and data. Validation tools will evolve as more appropriate statistical techniques and new information, such as that from proteins analysed at atomic resolution, becomes available
Two approaches for assessing the quality of protein X–ray structures are presented. One, implemented...
The throughput of macromolecular X-ray crystallography experiments has surged over the last decade. ...
In order to understand the function of a protein on a molecular level, the three-dimensional structu...
The explosive increase in the number of published three-dimensionsal structures of macromolecules de...
AbstractThe explosive increase in the number of published three-dimensionsal structures of macromole...
This report presents the conclusions of the X-ray Validation Task Force of the worldwide Protein Dat...
SummaryThis report presents the conclusions of the X-ray Validation Task Force of the worldwide Prot...
X-ray crystallography is the main technique of macromolecular structure determination. Typical probl...
Eight protein crystal structures, which have been refined against X-ray diffraction data extending t...
Eight protein crystal structures, which have been refined against X-ray diffraction data extending t...
AbstractStructure validation is a key component of all steps in the structure determination process,...
Structure validation is a key component of all steps in the structure determination process, from st...
Eight protein crystal structures, which have been re®ned against X-ray diffraction data extending to...
Single crystal X-ray crystallography has developed into a unique, highly automated and accessible to...
X-ray crystallography has long been a key method in solving the three-dimensional structure of prote...
Two approaches for assessing the quality of protein X–ray structures are presented. One, implemented...
The throughput of macromolecular X-ray crystallography experiments has surged over the last decade. ...
In order to understand the function of a protein on a molecular level, the three-dimensional structu...
The explosive increase in the number of published three-dimensionsal structures of macromolecules de...
AbstractThe explosive increase in the number of published three-dimensionsal structures of macromole...
This report presents the conclusions of the X-ray Validation Task Force of the worldwide Protein Dat...
SummaryThis report presents the conclusions of the X-ray Validation Task Force of the worldwide Prot...
X-ray crystallography is the main technique of macromolecular structure determination. Typical probl...
Eight protein crystal structures, which have been refined against X-ray diffraction data extending t...
Eight protein crystal structures, which have been refined against X-ray diffraction data extending t...
AbstractStructure validation is a key component of all steps in the structure determination process,...
Structure validation is a key component of all steps in the structure determination process, from st...
Eight protein crystal structures, which have been re®ned against X-ray diffraction data extending to...
Single crystal X-ray crystallography has developed into a unique, highly automated and accessible to...
X-ray crystallography has long been a key method in solving the three-dimensional structure of prote...
Two approaches for assessing the quality of protein X–ray structures are presented. One, implemented...
The throughput of macromolecular X-ray crystallography experiments has surged over the last decade. ...
In order to understand the function of a protein on a molecular level, the three-dimensional structu...