Ring ATPases that translocate disordered polymers possess lock-washer architectures that they impose on their substrates during transport via a hand-over-hand mechanism. Here, we investigate the operation of ring motors that transport ordered, helical substrates, such as the bacteriophage ϕ29 dsDNA packaging motor. This pentameric motor alternates between an ATP loading dwell and a hydrolysis burst wherein it packages one turn of DNA in four steps. When challenged with DNA-RNA hybrids and dsRNA, the motor matches its burst to the shorter helical pitches, keeping three power strokes invariant while shortening the fourth. Intermittently, the motor loses grip on the RNA-containing substrates, indicating that it makes optimal load-bearing conta...
SummaryRing NTPases are a class of ubiquitous molecular motors involved in basic biological partitio...
SummaryRing NTPases of the ASCE superfamily perform a variety of cellular functions. An important qu...
AbstractThe packaging motor of bacteriophage T4 translocates DNA into the capsid at a rate of up to ...
Ring ATPases that translocate disordered polymers possess lock-washer architectures that they impose...
Ring ATPases that translocate disordered polymers possess lock-washer architectures that they impose...
Double-stranded DNA viruses, including most bacteriophages and mammalian herpesviruses, package thei...
Protein complexes belonging to the super-family of ATPases Associated with diverse Activities of the...
AbstractIt has long been believed that the DNA-packaging motor of dsDNA viruses utilizes a rotation ...
Molecular machines are small assemblies harnessed to perform mechanical work in cells. These motors ...
Homomeric ring-ATPases perform many vital and varied tasks in the cell, ranging from chromosome segr...
SummaryMultimeric, ring-shaped molecular motors rely on the coordinated action of their subunits to ...
SummaryA large family of multimeric ATPases are involved in such diverse tasks as cell division, chr...
Ring NTPases are a class of ubiquitous molecular motors involved in basic biological partitioning pr...
A large family of multimeric ATPases are involved in such diverse tasks as cell division, chromosome...
Double-stranded DNA viruses package their genomes into pre-assembled capsids using virally-encoded A...
SummaryRing NTPases are a class of ubiquitous molecular motors involved in basic biological partitio...
SummaryRing NTPases of the ASCE superfamily perform a variety of cellular functions. An important qu...
AbstractThe packaging motor of bacteriophage T4 translocates DNA into the capsid at a rate of up to ...
Ring ATPases that translocate disordered polymers possess lock-washer architectures that they impose...
Ring ATPases that translocate disordered polymers possess lock-washer architectures that they impose...
Double-stranded DNA viruses, including most bacteriophages and mammalian herpesviruses, package thei...
Protein complexes belonging to the super-family of ATPases Associated with diverse Activities of the...
AbstractIt has long been believed that the DNA-packaging motor of dsDNA viruses utilizes a rotation ...
Molecular machines are small assemblies harnessed to perform mechanical work in cells. These motors ...
Homomeric ring-ATPases perform many vital and varied tasks in the cell, ranging from chromosome segr...
SummaryMultimeric, ring-shaped molecular motors rely on the coordinated action of their subunits to ...
SummaryA large family of multimeric ATPases are involved in such diverse tasks as cell division, chr...
Ring NTPases are a class of ubiquitous molecular motors involved in basic biological partitioning pr...
A large family of multimeric ATPases are involved in such diverse tasks as cell division, chromosome...
Double-stranded DNA viruses package their genomes into pre-assembled capsids using virally-encoded A...
SummaryRing NTPases are a class of ubiquitous molecular motors involved in basic biological partitio...
SummaryRing NTPases of the ASCE superfamily perform a variety of cellular functions. An important qu...
AbstractThe packaging motor of bacteriophage T4 translocates DNA into the capsid at a rate of up to ...