Electron crystallography offers an increasingly viable alternative to X-ray crystallography for structure determination, especially for membrane pro-teins. The methodology has been developed and successfully applied to 2D crystals; however, well-ordered thin, 3D crystals are often produced during crystallization trials and generally discarded due to complexities in structure analysis. To cope with these complexities, we have devel-oped a general method for determining unit cell geometry and for mer-ging electron diffraction data from tilt series. We have applied this method to thin, monoclinic crystals of Ca2-ATPase from sarcoplasmic reticulum, thus characterizing the unit cell and generating a 3D set of electron diffraction amplitudes to 8...
2D electron crystallography can be used to study small membrane proteins in their native environment...
Electron crystallography of two-dimensional (2D) crystals determines the structure of membrane prote...
Electron crystallography is a powerful technique for studying the structure and function of membrane...
Electron microscopy of multilamellar crystals of CA(2+)-ATPase currently offers the best opportunity...
ABSTRACT Obtaining large, flat, well ordered crystals represents the key to structure determination ...
Obtaining large, flat, well ordered crystals represents the key to structure determination by electr...
AbstractWe have used multilamellar crystals of the ATP-driven calcium pump from sarcoplasmic reticul...
Electron crystallography is used to study membrane proteins in the form of planar, two-dimensional (...
Electron crystallography studies the structure of two-dimensional crystals of membrane proteins or o...
Electron crystallography is used to study membrane proteins in the form of planar, two-dimensional (...
SummaryIn electron crystallography, membrane protein structure is determined from two-dimensional cr...
AbstractThe three-dimensional structure of Na,K-ATPase was determined by electron microscopy and ima...
For the foreseeable future, progress in determining high-resolution structures of membrane proteins ...
The molecular structure of Na,K-ATPase was determined by electron crystallography from two-dimension...
A stable phosphorylated specie of sarcoplasmic reticulum Ca-ATPase, is obtained frorn FITC-labeled ...
2D electron crystallography can be used to study small membrane proteins in their native environment...
Electron crystallography of two-dimensional (2D) crystals determines the structure of membrane prote...
Electron crystallography is a powerful technique for studying the structure and function of membrane...
Electron microscopy of multilamellar crystals of CA(2+)-ATPase currently offers the best opportunity...
ABSTRACT Obtaining large, flat, well ordered crystals represents the key to structure determination ...
Obtaining large, flat, well ordered crystals represents the key to structure determination by electr...
AbstractWe have used multilamellar crystals of the ATP-driven calcium pump from sarcoplasmic reticul...
Electron crystallography is used to study membrane proteins in the form of planar, two-dimensional (...
Electron crystallography studies the structure of two-dimensional crystals of membrane proteins or o...
Electron crystallography is used to study membrane proteins in the form of planar, two-dimensional (...
SummaryIn electron crystallography, membrane protein structure is determined from two-dimensional cr...
AbstractThe three-dimensional structure of Na,K-ATPase was determined by electron microscopy and ima...
For the foreseeable future, progress in determining high-resolution structures of membrane proteins ...
The molecular structure of Na,K-ATPase was determined by electron crystallography from two-dimension...
A stable phosphorylated specie of sarcoplasmic reticulum Ca-ATPase, is obtained frorn FITC-labeled ...
2D electron crystallography can be used to study small membrane proteins in their native environment...
Electron crystallography of two-dimensional (2D) crystals determines the structure of membrane prote...
Electron crystallography is a powerful technique for studying the structure and function of membrane...