SummaryRing NTPases are a class of ubiquitous molecular motors involved in basic biological partitioning processes. dsDNA viruses encode ring ATPases that translocate their genomes to near-crystalline densities within pre-assembled viral capsids. Here, X-ray crystallography, cryoEM, and biochemical analyses of the dsDNA packaging motor in bacteriophage phi29 show how individual subunits are arranged in a pentameric ATPase ring and suggest how their activities are coordinated to translocate dsDNA. The resulting pseudo-atomic structure of the motor and accompanying functional analyses show how ATP is bound in the ATPase active site; identify two DNA contacts, including a potential DNA translocating loop; demonstrate that a trans-acting argini...
SummaryViral genomes are packaged into “procapsids” by powerful molecular motors. We report the crys...
SummaryRing NTPases of the ASCE superfamily perform a variety of cellular functions. An important qu...
AbstractIt has long been believed that the DNA-packaging motor of dsDNA viruses utilizes a rotation ...
Ring NTPases are a class of ubiquitous molecular motors involved in basic biological partitioning pr...
SummaryRing NTPases are a class of ubiquitous molecular motors involved in basic biological partitio...
Protein complexes belonging to the super-family of ATPases Associated with diverse Activities of the...
Homomeric ring-ATPases perform many vital and varied tasks in the cell, ranging from chromosome segr...
Double-stranded DNA viruses, including most bacteriophages and mammalian herpesviruses, package thei...
Double-stranded DNA viruses package their genomes into pre-assembled protein capsids using virally-e...
Many essential cellular processes rely on substrate rotation or translocation by a multi-subunit, ri...
ATP-driven motors exist globally in almost all prokaryotic and eukaryotic organisms. The motors in v...
Double-stranded DNA viruses package their genomes into pre-assembled capsids using virally-encoded A...
Subunits in multimeric ring-shaped motors must coordinate their activities to ensure correct and eff...
In viruses, multi-subunit ring-ATPases are involved in genome packaging. Here, using single-molecule...
ATP-driven motors exist globally in almost all prokaryotic and eukaryotic organisms. The motors in v...
SummaryViral genomes are packaged into “procapsids” by powerful molecular motors. We report the crys...
SummaryRing NTPases of the ASCE superfamily perform a variety of cellular functions. An important qu...
AbstractIt has long been believed that the DNA-packaging motor of dsDNA viruses utilizes a rotation ...
Ring NTPases are a class of ubiquitous molecular motors involved in basic biological partitioning pr...
SummaryRing NTPases are a class of ubiquitous molecular motors involved in basic biological partitio...
Protein complexes belonging to the super-family of ATPases Associated with diverse Activities of the...
Homomeric ring-ATPases perform many vital and varied tasks in the cell, ranging from chromosome segr...
Double-stranded DNA viruses, including most bacteriophages and mammalian herpesviruses, package thei...
Double-stranded DNA viruses package their genomes into pre-assembled protein capsids using virally-e...
Many essential cellular processes rely on substrate rotation or translocation by a multi-subunit, ri...
ATP-driven motors exist globally in almost all prokaryotic and eukaryotic organisms. The motors in v...
Double-stranded DNA viruses package their genomes into pre-assembled capsids using virally-encoded A...
Subunits in multimeric ring-shaped motors must coordinate their activities to ensure correct and eff...
In viruses, multi-subunit ring-ATPases are involved in genome packaging. Here, using single-molecule...
ATP-driven motors exist globally in almost all prokaryotic and eukaryotic organisms. The motors in v...
SummaryViral genomes are packaged into “procapsids” by powerful molecular motors. We report the crys...
SummaryRing NTPases of the ASCE superfamily perform a variety of cellular functions. An important qu...
AbstractIt has long been believed that the DNA-packaging motor of dsDNA viruses utilizes a rotation ...