AbstractThe loop between β-strands F and G in the coat protein of small RNA bacteriophages forms the interactions at the fivefold and threefold (quasi-sixfold) icosahedral axes. In many cases, mutations in this region renders the coat protein unable to form capsids. This FG loop has therefore been suggested to be of major importance for the virus assembly process by guiding the assembly and helping to define the correct curvature of the virus shell. We have determined the crystal structure of a phage fr capsid where the coat protein has a four-residue deletion in the FG loop. This mutant retains the ability to form virus capsids of normal size but has a significantly lower temperature stability than the wild type. The structure reveals that...
AbstractAssembly of certain classes of bacterial and animal viruses requires the transient presence ...
The mechanism of viral capsid assembly is an intriguing problem because of its fundamental importanc...
The RNA bacteriophages represent ideal model systems in which to probe the detailed assembly pathway...
Tailed dsDNA bacteriophages and herpesviruses form capsids using coat proteins that have the HK97 fo...
The hallmark of a virus is its capsid, which harbors the viral genome and is formed from protein sub...
AbstractThe amino acid sequence of viral capsid proteins contains information about their folding, s...
Many T=3 plant and insect viruses use a molecular switch in form of order/disorder of a segment of t...
The hallmark of a virus is its capsid, which harbors the viral genome and is formed from protein sub...
AbstractAssembly of icosahedral capsids of proper size and symmetry is not understood. Residue F170 ...
Many bacteriophages and eukaryotic viruses, which share little sequence similarities, have icosahedr...
The formation of many double-stranded DNA viruses, such as herpesviruses and bacteriophages, begins ...
The RNA bacteriophages represent ideal model systems in which to probe the detailed assembly pathway...
Double-stranded DNA (dsDNA) tailed phages and herpesviruses assemble their capsids using coat protei...
SummaryViral capsid assembly and stability in tailed, dsDNA phage and Herpesviridae are achieved by ...
Icosahedral virus assembly requires a series of concerted and highly specific protein-protein intera...
AbstractAssembly of certain classes of bacterial and animal viruses requires the transient presence ...
The mechanism of viral capsid assembly is an intriguing problem because of its fundamental importanc...
The RNA bacteriophages represent ideal model systems in which to probe the detailed assembly pathway...
Tailed dsDNA bacteriophages and herpesviruses form capsids using coat proteins that have the HK97 fo...
The hallmark of a virus is its capsid, which harbors the viral genome and is formed from protein sub...
AbstractThe amino acid sequence of viral capsid proteins contains information about their folding, s...
Many T=3 plant and insect viruses use a molecular switch in form of order/disorder of a segment of t...
The hallmark of a virus is its capsid, which harbors the viral genome and is formed from protein sub...
AbstractAssembly of icosahedral capsids of proper size and symmetry is not understood. Residue F170 ...
Many bacteriophages and eukaryotic viruses, which share little sequence similarities, have icosahedr...
The formation of many double-stranded DNA viruses, such as herpesviruses and bacteriophages, begins ...
The RNA bacteriophages represent ideal model systems in which to probe the detailed assembly pathway...
Double-stranded DNA (dsDNA) tailed phages and herpesviruses assemble their capsids using coat protei...
SummaryViral capsid assembly and stability in tailed, dsDNA phage and Herpesviridae are achieved by ...
Icosahedral virus assembly requires a series of concerted and highly specific protein-protein intera...
AbstractAssembly of certain classes of bacterial and animal viruses requires the transient presence ...
The mechanism of viral capsid assembly is an intriguing problem because of its fundamental importanc...
The RNA bacteriophages represent ideal model systems in which to probe the detailed assembly pathway...