Abstract Remarkable progress has been made during the past ten years in elucidating the structure of the bacteriophage T4 tail by a combination of three-dimensional image reconstruction from electron micrographs and X-ray crystallography of the components. Partial and complete structures of nine out of twenty tail structural proteins have been determined by X-ray crystallography and have been fitted into the 3D-reconstituted structure of the "extended" tail. The 3D structure of the "contracted" tail was also determined and interpreted in terms of component proteins. Given the pseudo-atomic tail structures both before and after contraction, it is now possible to understand the gross conformational change of the baseplate in terms of the chan...
AbstractContraction of the bacteriophage T4 tail in the act of host cell penetration represents a ma...
Large multi-component structures play an essential role in many crucial cellular processes. The morp...
Bacteriophages are usually complex molecular machines. Bacteriophages T4 and &phis;29 were investiga...
Remarkable progress has been made during the past ten years in elucidating the structure of the bact...
Bacteriophage T4 tail is a complex molecular machine that facilitates high infection efficiency of t...
My Ph.D. research involved studying the process of infection of Escherichia coli bacteria by bacteri...
AbstractThe contractile tail of bacteriophage T4 undergoes major structural transitions when the vir...
The formation of bacteriophage T4 has been studied by examining the phage components accumulating in...
Complexes of substructural e ements of bacteriophage T4 (baseplates, baseplate-core complexes) with ...
The tail fibres of long-tailed phages are complex elongated protein assemblies capable of specific r...
The baseplate of phage T4 is an important model system in viral supramolecular assembly. The basepla...
The structural arrangement of protein subunits in extended and contracted tail sheaths of T4 bacteri...
BACKGROUND: The T4 bacteriophage consists of a head, filled with double-stranded DNA, and a complex ...
AbstractBackground: The T4 bacteriophage consists of a head, filled with double-stranded DNA, and a ...
The structure and assembly of bacteriophage T4 tail fibers was examined as a model system for study...
AbstractContraction of the bacteriophage T4 tail in the act of host cell penetration represents a ma...
Large multi-component structures play an essential role in many crucial cellular processes. The morp...
Bacteriophages are usually complex molecular machines. Bacteriophages T4 and &phis;29 were investiga...
Remarkable progress has been made during the past ten years in elucidating the structure of the bact...
Bacteriophage T4 tail is a complex molecular machine that facilitates high infection efficiency of t...
My Ph.D. research involved studying the process of infection of Escherichia coli bacteria by bacteri...
AbstractThe contractile tail of bacteriophage T4 undergoes major structural transitions when the vir...
The formation of bacteriophage T4 has been studied by examining the phage components accumulating in...
Complexes of substructural e ements of bacteriophage T4 (baseplates, baseplate-core complexes) with ...
The tail fibres of long-tailed phages are complex elongated protein assemblies capable of specific r...
The baseplate of phage T4 is an important model system in viral supramolecular assembly. The basepla...
The structural arrangement of protein subunits in extended and contracted tail sheaths of T4 bacteri...
BACKGROUND: The T4 bacteriophage consists of a head, filled with double-stranded DNA, and a complex ...
AbstractBackground: The T4 bacteriophage consists of a head, filled with double-stranded DNA, and a ...
The structure and assembly of bacteriophage T4 tail fibers was examined as a model system for study...
AbstractContraction of the bacteriophage T4 tail in the act of host cell penetration represents a ma...
Large multi-component structures play an essential role in many crucial cellular processes. The morp...
Bacteriophages are usually complex molecular machines. Bacteriophages T4 and &phis;29 were investiga...