We have examined the structure of S-layers isolated from Sulfolobus acidocaldarius using atomic force microscopy (AFM) and transmission electron microscopy (TEM). From the AFM images, we were able to directly observe individual dimers of the crystal, defects in the crystal structure, and twin boundaries. We have identified two types of boundaries, one defined by a mirror plane and the other by a glide plane. This work shows that twin boundaries are highly structured regions that are directly related to the organization of units within each crystal domain. Projection maps from TEM images have shown that there are significant differences in the final average maps has allowed us to relate high magnification views obtained by AFM to the relativ...
Bacterial surface layers (S-layers) are extracellular protein networks that act as molecular sieves ...
Direct visualization of macromolecular crystal growth using atomic force microscopy (AFM) has provid...
Electron crystallography and atomic force microscopy allow the study of two-dimensional membrane pro...
We have examined the structure of S-layers isolated from Sulfolobus acidocaldarius using atomic forc...
We have observed three-dimensional crystals of the calcium pump from sarcoplasmic reticulum by atomi...
Tapping mode atomic force microscopy was employed to study the surface structure of different protei...
AbstractWe report transmission electron microscopy (TEM) investigations on bacterial surface layers ...
Atomic force microscopy (AFM) images at the molecular level have been obtained for a number of diffe...
AbstractElectron crystallography and atomic force microscopy allow the study of two-dimensional memb...
Crystals of heavy riboflavin synthase from Bacillus subtilis were freeze-etched and vacuum-coated at...
Atomic force microscopy (AFM) has the capacity to probe the surface topography of a variety of mate...
Three-dimensional structures have recently been determined by electron crystallography at a resoluti...
A new AFM instrument dedicated to protein crystal imaging in solution is here successfully introduce...
Protein structures at moderate to high resolution can now be readily solved using an electron micros...
The crystallization of molecules from solution encompasses a number of key areas in science and tech...
Bacterial surface layers (S-layers) are extracellular protein networks that act as molecular sieves ...
Direct visualization of macromolecular crystal growth using atomic force microscopy (AFM) has provid...
Electron crystallography and atomic force microscopy allow the study of two-dimensional membrane pro...
We have examined the structure of S-layers isolated from Sulfolobus acidocaldarius using atomic forc...
We have observed three-dimensional crystals of the calcium pump from sarcoplasmic reticulum by atomi...
Tapping mode atomic force microscopy was employed to study the surface structure of different protei...
AbstractWe report transmission electron microscopy (TEM) investigations on bacterial surface layers ...
Atomic force microscopy (AFM) images at the molecular level have been obtained for a number of diffe...
AbstractElectron crystallography and atomic force microscopy allow the study of two-dimensional memb...
Crystals of heavy riboflavin synthase from Bacillus subtilis were freeze-etched and vacuum-coated at...
Atomic force microscopy (AFM) has the capacity to probe the surface topography of a variety of mate...
Three-dimensional structures have recently been determined by electron crystallography at a resoluti...
A new AFM instrument dedicated to protein crystal imaging in solution is here successfully introduce...
Protein structures at moderate to high resolution can now be readily solved using an electron micros...
The crystallization of molecules from solution encompasses a number of key areas in science and tech...
Bacterial surface layers (S-layers) are extracellular protein networks that act as molecular sieves ...
Direct visualization of macromolecular crystal growth using atomic force microscopy (AFM) has provid...
Electron crystallography and atomic force microscopy allow the study of two-dimensional membrane pro...