While protein crystallography has, for many years, been the most used method for structural analysis of macromolecular complexes, remarkable recent advances in high-resolution electron cryo-microscopy led to suggestions that 'the revolution will not be crystallised'. Here we highlight the current success rate, speed and ease of modern crystallographic structure determination and some recent triumphs of both 'classical' crystallography and the use of X-ray free electron lasers. We also outline fundamental differences between structure determination using X-ray crystallography and electron microscopy. We suggest that crystallography will continue to co-exist with electron microscopy as part of an integrated array of methods, allowing structur...
X-ray crystallography has long been a key method in solving the three-dimensional structure of prote...
X-ray crystallography has long been a key method in solving the three-dimensional structure of prote...
It is an exciting period in membrane protein structural biology with a number of medically important...
While protein crystallography has, for many years, been the most used method for structural analysis...
Dramatic improvements in experimental methods and computational techniques have revolutionized three...
Macromolecular crystallography (MX) has been a motor for biology for over half a century and this co...
Macromolecular crystallography (MX) has been a motor for biology for over half a century and this co...
Early on, crystallography was a domain of mineralogy and mathematics and dealt mostly with symmetry ...
The combination of cryo-electron microscopy to study large biological assemblies at low resolution w...
From the earliest work on regular arrays in negative stain, electron crystallography has contributed...
Structural biology continues to benefit from an expanding toolkit, which is helping to gain unpreced...
X-ray crystal structure analysis can now be seen as a special kind of microscopy which is being exte...
The field of structural biology focuses on determining and studying the structures of macromolecules...
The combination of cryo-electron microscopy to study large biological assemblies at low resolution w...
Electron crystallography determines the structure of membrane embedded proteins in the two-dimension...
X-ray crystallography has long been a key method in solving the three-dimensional structure of prote...
X-ray crystallography has long been a key method in solving the three-dimensional structure of prote...
It is an exciting period in membrane protein structural biology with a number of medically important...
While protein crystallography has, for many years, been the most used method for structural analysis...
Dramatic improvements in experimental methods and computational techniques have revolutionized three...
Macromolecular crystallography (MX) has been a motor for biology for over half a century and this co...
Macromolecular crystallography (MX) has been a motor for biology for over half a century and this co...
Early on, crystallography was a domain of mineralogy and mathematics and dealt mostly with symmetry ...
The combination of cryo-electron microscopy to study large biological assemblies at low resolution w...
From the earliest work on regular arrays in negative stain, electron crystallography has contributed...
Structural biology continues to benefit from an expanding toolkit, which is helping to gain unpreced...
X-ray crystal structure analysis can now be seen as a special kind of microscopy which is being exte...
The field of structural biology focuses on determining and studying the structures of macromolecules...
The combination of cryo-electron microscopy to study large biological assemblies at low resolution w...
Electron crystallography determines the structure of membrane embedded proteins in the two-dimension...
X-ray crystallography has long been a key method in solving the three-dimensional structure of prote...
X-ray crystallography has long been a key method in solving the three-dimensional structure of prote...
It is an exciting period in membrane protein structural biology with a number of medically important...