A two-dimensional (2D) crystal of streptavidin has been obtained by a nonspecific binding method. The protein molecules were bound and formed a dense packing on the film of poly(1-benzyl-L-histidine) spread at the surface of protein solution. The surface film was moderately heated to stimulate crystallization of bound streptavidin. A potential of this method for obtaining 2D crystals of soluble proteins is demonstrated. The present 2D crystal structure of streptavidin resembles that previously obtained by specific binding to biotinylated lipid. We show in addition that the 2D array of protein with usual size approximately 50 A can be imaged using a high resolution scanning electron microscope (HR-SEM) and subject to structural analysis at l...
Streptavidin two-dimensional (2D) crystals were grown on mica-supported phospholipid bilayers contai...
The two-dimensional (2-D) crystallization of proteins on lipid monolayers at the air-water interface...
The techniques as well as the principles of the 2D crystallization of membrane and water-soluble pro...
The biotin-binding protein streptavidin was crystallized as two-dimensional periodic arrays on bioti...
Streptavidin forms two-dimensional crystals when specifically bound to layers of biotinylated lipids...
A powerful and potentially general approach to the targeting and crystallization of proteins on lipi...
AbstractFlat substrate surfaces are a key to successful imaging of biological macromolecules by atom...
Flat substrate surfaces are a key to successful imaging of biological macromolecules by atomic force...
We describe a rapid and convenient method of growing streptavidin (SA) monolayer crystals directly o...
Protein structures at moderate to high resolution can now be readily solved using an electron micros...
Protein structure determination by classical x-ray crystallography requires three-dimensional crysta...
Individual water-soluble molecules of the protein ferritin have been imaged on a silicon surface in ...
AbstractProtein structure determination by classical x-ray crystallography requires three-dimensiona...
Protein structure determination by classical x-ray crystallography requires three-dimensional crysta...
Streptavidin two-dimensional (2D) crystals were grown on mica-supported phospholipid bilayers contai...
Streptavidin two-dimensional (2D) crystals were grown on mica-supported phospholipid bilayers contai...
The two-dimensional (2-D) crystallization of proteins on lipid monolayers at the air-water interface...
The techniques as well as the principles of the 2D crystallization of membrane and water-soluble pro...
The biotin-binding protein streptavidin was crystallized as two-dimensional periodic arrays on bioti...
Streptavidin forms two-dimensional crystals when specifically bound to layers of biotinylated lipids...
A powerful and potentially general approach to the targeting and crystallization of proteins on lipi...
AbstractFlat substrate surfaces are a key to successful imaging of biological macromolecules by atom...
Flat substrate surfaces are a key to successful imaging of biological macromolecules by atomic force...
We describe a rapid and convenient method of growing streptavidin (SA) monolayer crystals directly o...
Protein structures at moderate to high resolution can now be readily solved using an electron micros...
Protein structure determination by classical x-ray crystallography requires three-dimensional crysta...
Individual water-soluble molecules of the protein ferritin have been imaged on a silicon surface in ...
AbstractProtein structure determination by classical x-ray crystallography requires three-dimensiona...
Protein structure determination by classical x-ray crystallography requires three-dimensional crysta...
Streptavidin two-dimensional (2D) crystals were grown on mica-supported phospholipid bilayers contai...
Streptavidin two-dimensional (2D) crystals were grown on mica-supported phospholipid bilayers contai...
The two-dimensional (2-D) crystallization of proteins on lipid monolayers at the air-water interface...
The techniques as well as the principles of the 2D crystallization of membrane and water-soluble pro...