The last decade has witnessed the development of new methodologies in molecular biology and biochemistrywhich, together with thewidespread availability of computing power for fast calculation and graphics, have supported the striking growth of crystallographic studies of biological relevance. This surge in newmethodologies experienced by macromolecular crystallography has been largely fuelled by developments in structural genomics and by the needs of the pharmaceutical industry. A key contribution to such rapid growth was certainly provided by the increased access to synchrotron sources, which resulted in new ways of collecting X-ray diffraction data and allowed novel structure determination techniques, otherwise not possible on conventiona...
X-ray crystallography has long been a key method in solving the three-dimensional structure of prote...
The elucidation of the three dimensional structure of biological macromolecules has provided an impo...
X-ray crystallography has long been a key method in solving the three-dimensional structure of prote...
A current overview of synchrotron radiation (SR) in macromolecular crystallography (MX) instrumentat...
A current overview of synchrotron radiation (SR) in macromolecular crystallography (MX) instrumentat...
Synchrotron radiation has proved to be of inestimable importance for extending the scope of X-ray di...
Macromolecular X-ray crystallography underpins the vigorous field of structural molecular biology ha...
Since the pioneering diffraction experiments led by Max von Laue in 1912, X-ray crystallography has ...
International audienceA current overview of synchrotron radiation (SR) in macromolecular crystallogr...
Background Synchrotron radiation (SR) sources provide diverse X-ray methods for the investigation...
During the past ten years the rate of protein structure determination by X-ray crystallography has r...
The technique of X-ray diffraction is central to our understanding of biomolecular structure at high...
While the majority of macromolecular X-ray data are currently collected using highly efficient beaml...
The elucidation of the three dimensional structure of biological macromolecules has provided an impo...
The elucidation of the three dimensional structure of biological macromolecules has provided an impo...
X-ray crystallography has long been a key method in solving the three-dimensional structure of prote...
The elucidation of the three dimensional structure of biological macromolecules has provided an impo...
X-ray crystallography has long been a key method in solving the three-dimensional structure of prote...
A current overview of synchrotron radiation (SR) in macromolecular crystallography (MX) instrumentat...
A current overview of synchrotron radiation (SR) in macromolecular crystallography (MX) instrumentat...
Synchrotron radiation has proved to be of inestimable importance for extending the scope of X-ray di...
Macromolecular X-ray crystallography underpins the vigorous field of structural molecular biology ha...
Since the pioneering diffraction experiments led by Max von Laue in 1912, X-ray crystallography has ...
International audienceA current overview of synchrotron radiation (SR) in macromolecular crystallogr...
Background Synchrotron radiation (SR) sources provide diverse X-ray methods for the investigation...
During the past ten years the rate of protein structure determination by X-ray crystallography has r...
The technique of X-ray diffraction is central to our understanding of biomolecular structure at high...
While the majority of macromolecular X-ray data are currently collected using highly efficient beaml...
The elucidation of the three dimensional structure of biological macromolecules has provided an impo...
The elucidation of the three dimensional structure of biological macromolecules has provided an impo...
X-ray crystallography has long been a key method in solving the three-dimensional structure of prote...
The elucidation of the three dimensional structure of biological macromolecules has provided an impo...
X-ray crystallography has long been a key method in solving the three-dimensional structure of prote...