Electron crystallography of 2D protein crystals provides a powerful tool for the determination of membrane protein structure. In this method, data is acquired in the Fourier domain as randomly sampled, uncoupled, amplitudes and phases. Due to physical constraints on specimen tilting, those Fourier data show a vast un-sampled "missing cone" of information, producing resolution loss in the direction perpendicular to the membrane plane. Based on the flexible language of projection onto sets, we provide a full solution for these problems with a projective constraint optimization algorithm that, for sufficiently oversampled data, produces complete recovery of unmeasured data in the missing cone. We apply this method to an experimental data set o...
X-ray crystallography is one of the main methods to establish the three-dimensional structure of bio...
Electron crystallography is a powerful technique for the structure determination of membrane protein...
Using maximum entropy and likelihood, an ab initio phase determination was carried out in projection...
High Resolution three-dimensional (3D) reconstruction of several proteins has been achieved from two...
2D electron crystallography can be used to study small membrane proteins in their native environment...
SummaryIn electron crystallography, membrane protein structure is determined from two-dimensional cr...
AbstractIn cases where ultra-flat cryo-preparations of well-ordered two-dimensional (2D) crystals ar...
In cases where ultra-flat cryo-preparations of well-ordered two-dimensional (2D) crystals are availa...
In cases where ultra-flat cryo-preparations of well-ordered two-dimensional (2D) crystals are availa...
The accuracy of structure factor phases determined from electron microscope images is determined mai...
Electron crystallography of two-dimensional (2D) crystals determines the structure of membrane prote...
Electron crystallography determines the structure of membrane proteins and other periodic samples by...
The range of tilt angles for which projected images of two-dimensionally periodic specimens can be o...
Electron crystallography studies the structure of two-dimensional crystals of membrane proteins or o...
Determining the phases of a diffraction pattern is crucial since the diffraction pattern of a protei...
X-ray crystallography is one of the main methods to establish the three-dimensional structure of bio...
Electron crystallography is a powerful technique for the structure determination of membrane protein...
Using maximum entropy and likelihood, an ab initio phase determination was carried out in projection...
High Resolution three-dimensional (3D) reconstruction of several proteins has been achieved from two...
2D electron crystallography can be used to study small membrane proteins in their native environment...
SummaryIn electron crystallography, membrane protein structure is determined from two-dimensional cr...
AbstractIn cases where ultra-flat cryo-preparations of well-ordered two-dimensional (2D) crystals ar...
In cases where ultra-flat cryo-preparations of well-ordered two-dimensional (2D) crystals are availa...
In cases where ultra-flat cryo-preparations of well-ordered two-dimensional (2D) crystals are availa...
The accuracy of structure factor phases determined from electron microscope images is determined mai...
Electron crystallography of two-dimensional (2D) crystals determines the structure of membrane prote...
Electron crystallography determines the structure of membrane proteins and other periodic samples by...
The range of tilt angles for which projected images of two-dimensionally periodic specimens can be o...
Electron crystallography studies the structure of two-dimensional crystals of membrane proteins or o...
Determining the phases of a diffraction pattern is crucial since the diffraction pattern of a protei...
X-ray crystallography is one of the main methods to establish the three-dimensional structure of bio...
Electron crystallography is a powerful technique for the structure determination of membrane protein...
Using maximum entropy and likelihood, an ab initio phase determination was carried out in projection...