AbstractThe thermal stability of capsids of the bacteriophage MS2, lacking genomic RNA, has been investigated using electron microscopy. Coat protein mutants with amino acid substitutions at residues involved in making contacts at both inter-molecular interfaces and within the coat protein subunit are also capable of forming ‘empty’ capsids of the same size and symmetry as the wild-type protein. Mutations have been characterised which are neutral, deleterious or advantageous in terms of thermal stability. In some cases, the results can be rationalised by reference to the recently refined X-ray crystal structure of the wild-type particle
Infection by viruses depends on a balance between capsid stability and dynamics. This study investig...
Self-assembling protein containers are promising delivery vehicles for cellular and gene therapy app...
Using cross-linking coupled to matrix-assisted laser desorption/ionization mass spectrometry and CLI...
AbstractThe thermal stability of capsids of the bacteriophage MS2, lacking genomic RNA, has been inv...
Self-assembling proteins are emerging as compelling solutions in both drug delivery and vaccine deve...
AbstractBackground: The coat protein in RNA bacteriophages binds and encapsidates viral RNA, and als...
In MS2 assembly of phage particles results from an interaction between a coat protein dimer and a st...
The icosahedrally symmetrized structure of bacteriophage MS2 as determined by cryo-electron microsco...
The potential of the RNA phage MS2 to accommodate extra amino acids in its major coat protein has be...
Bacteriophage MS2 is a positive-sense, single-stranded RNA virus encapsulated in an asymmetric T = 3...
Structure-based mutational analysis of viruses is providing many insights into the relationship betw...
Tailed dsDNA bacteriophages and herpesviruses form capsids using coat proteins that have the HK97 fo...
Single strand (ss) RNA viruses are amongst the most prevalent viral pathogens in nature. A key event...
Self-assembly is a vital part of the life cycle of certain icosahedral RNA viruses. Furthermore, the...
Using a combination of biochemistry, mass spectrometry, NMR spectroscopy and cryo-electron microscop...
Infection by viruses depends on a balance between capsid stability and dynamics. This study investig...
Self-assembling protein containers are promising delivery vehicles for cellular and gene therapy app...
Using cross-linking coupled to matrix-assisted laser desorption/ionization mass spectrometry and CLI...
AbstractThe thermal stability of capsids of the bacteriophage MS2, lacking genomic RNA, has been inv...
Self-assembling proteins are emerging as compelling solutions in both drug delivery and vaccine deve...
AbstractBackground: The coat protein in RNA bacteriophages binds and encapsidates viral RNA, and als...
In MS2 assembly of phage particles results from an interaction between a coat protein dimer and a st...
The icosahedrally symmetrized structure of bacteriophage MS2 as determined by cryo-electron microsco...
The potential of the RNA phage MS2 to accommodate extra amino acids in its major coat protein has be...
Bacteriophage MS2 is a positive-sense, single-stranded RNA virus encapsulated in an asymmetric T = 3...
Structure-based mutational analysis of viruses is providing many insights into the relationship betw...
Tailed dsDNA bacteriophages and herpesviruses form capsids using coat proteins that have the HK97 fo...
Single strand (ss) RNA viruses are amongst the most prevalent viral pathogens in nature. A key event...
Self-assembly is a vital part of the life cycle of certain icosahedral RNA viruses. Furthermore, the...
Using a combination of biochemistry, mass spectrometry, NMR spectroscopy and cryo-electron microscop...
Infection by viruses depends on a balance between capsid stability and dynamics. This study investig...
Self-assembling protein containers are promising delivery vehicles for cellular and gene therapy app...
Using cross-linking coupled to matrix-assisted laser desorption/ionization mass spectrometry and CLI...