AbstractBackground: The coat protein in RNA bacteriophages binds and encapsidates viral RNA, and also acts as translational repressor of viral replicase by binding to an RNA hairpin in the RNA genome. Because of its dual function, the MS2 coat protein is an interesting candidate for structural studies of protein–RNA interactions and protein–protein interactions. In this study, unassembled MS2 coat protein dimers were selected to analyze repressor activity and virus assembly.Results The crystal structure of a mutant MS2 coat protein that is defective in viral assembly yet retains repressor activity has been determined at 2.0 å resolution. The unassembled dimer is stabilized by interdigitation of α-helices, and the formation of a 10-stranded ...
This work focuses on the replicase translational operator (TR) stem loop of the RNA MS2 bacteriophag...
The coat proteins of RNA phages MS2 and GA are specific RNA-binding proteins which function to encap...
The coat proteins of the RNA phages MS2 and Qβ are structurally homologous, yet they specifically bi...
AbstractBackground: The coat protein in RNA bacteriophages binds and encapsidates viral RNA, and als...
Journal ArticleThe coat protein from the MS2 bacteriophage plays a dual role by encapsidating viral ...
Using a combination of biochemistry, mass spectrometry, NMR spectroscopy and cryo-electron microscop...
In MS2 assembly of phage particles results from an interaction between a coat protein dimer and a st...
SummarySequence-specific interactions between RNA stem-loops and coat protein (CP) subunits play vit...
AbstractBackground: The capsid protein subunits of small RNA bacteriophages form a T=3 particle upon...
The coat proteins of the RNA bacteriophages Qβ and MS2 are specific RNA binding proteins. Although t...
Single strand (ss) RNA viruses are amongst the most prevalent viral pathogens in nature. A key event...
The icosahedrally symmetrized structure of bacteriophage MS2 as determined by cryo-electron microsco...
The RNA bacteriophages represent ideal model systems in which to probe the detailed assembly pathway...
Packaging of the genome into a protein capsid and its subsequent delivery into a host cell are two f...
Crystal structures of the tobacco mosaic virus (TMV) coat protein (CP) in its helical and disk confo...
This work focuses on the replicase translational operator (TR) stem loop of the RNA MS2 bacteriophag...
The coat proteins of RNA phages MS2 and GA are specific RNA-binding proteins which function to encap...
The coat proteins of the RNA phages MS2 and Qβ are structurally homologous, yet they specifically bi...
AbstractBackground: The coat protein in RNA bacteriophages binds and encapsidates viral RNA, and als...
Journal ArticleThe coat protein from the MS2 bacteriophage plays a dual role by encapsidating viral ...
Using a combination of biochemistry, mass spectrometry, NMR spectroscopy and cryo-electron microscop...
In MS2 assembly of phage particles results from an interaction between a coat protein dimer and a st...
SummarySequence-specific interactions between RNA stem-loops and coat protein (CP) subunits play vit...
AbstractBackground: The capsid protein subunits of small RNA bacteriophages form a T=3 particle upon...
The coat proteins of the RNA bacteriophages Qβ and MS2 are specific RNA binding proteins. Although t...
Single strand (ss) RNA viruses are amongst the most prevalent viral pathogens in nature. A key event...
The icosahedrally symmetrized structure of bacteriophage MS2 as determined by cryo-electron microsco...
The RNA bacteriophages represent ideal model systems in which to probe the detailed assembly pathway...
Packaging of the genome into a protein capsid and its subsequent delivery into a host cell are two f...
Crystal structures of the tobacco mosaic virus (TMV) coat protein (CP) in its helical and disk confo...
This work focuses on the replicase translational operator (TR) stem loop of the RNA MS2 bacteriophag...
The coat proteins of RNA phages MS2 and GA are specific RNA-binding proteins which function to encap...
The coat proteins of the RNA phages MS2 and Qβ are structurally homologous, yet they specifically bi...