Cleavage of bacteriophage DNA by the Type III restriction-modification enzymes requires long-range interaction between DNA sites. This is facilitated by one-dimensional diffusion ('DNA sliding') initiated by ATP hydrolysis catalyzed by a superfamily 2 helicase-like ATPase. Here we combined ultrafast twist measurements based on plasmonic DNA origami nano-rotors with stopped-flow fluorescence and gel-based assays to examine the role(s) of ATP hydrolysis. Our data show that the helicase-like domain has multiple roles. First, this domain stabilizes initial DNA interactions alongside the methyltransferase subunits. Second, it causes environmental changes in the flipped adenine base following hydrolysis of the first ATP. Finally, it remodels nucl...
SummaryBacteriophage T7 gp4 serves as a model protein for replicative helicases that couples deoxyth...
AbstractHexameric helicases are molecular motor proteins that utilize energy obtained from ATP hydro...
Replicative helicases are essential molecular machines that utilize energy derived from NTP hydrolys...
Cleavage of bacteriophage DNA by the Type III restriction-modification enzymes requires long-range i...
Many genetic processes require enzymes or enzyme complexes that interact simultaneously with distant...
In this dissertation we take advantage of the real-time manipulating, high force generating, and sma...
In the last 15 years, single molecule techniques have allowed us to observe the transient, heterogen...
SummaryHelicases use the energy derived from nucleoside triphosphate hydrolysis to unwind double hel...
AbstractPcrA helicase from Bacillus stearothermophilus is one of the smallest motor proteins structu...
The Cdc45-MCM-GINS (CMG) helicase unwinds DNA during the elongation step of eukaryotic genome duplic...
International audienceHelicases and translocases are proteins that use the energy derived from ATP h...
DNA translocation is a fundamental process in biology, required for essential cellular processes inc...
The viral DNA packaging motors are among the most powerful biological machines known, and their mech...
Many viruses employ ATP-powered motors for genome packaging. We combined genetic, biochemical, and s...
Bacteriophage T7 gp4 serves as a model protein for replicative helicases that couples deoxythymidine...
SummaryBacteriophage T7 gp4 serves as a model protein for replicative helicases that couples deoxyth...
AbstractHexameric helicases are molecular motor proteins that utilize energy obtained from ATP hydro...
Replicative helicases are essential molecular machines that utilize energy derived from NTP hydrolys...
Cleavage of bacteriophage DNA by the Type III restriction-modification enzymes requires long-range i...
Many genetic processes require enzymes or enzyme complexes that interact simultaneously with distant...
In this dissertation we take advantage of the real-time manipulating, high force generating, and sma...
In the last 15 years, single molecule techniques have allowed us to observe the transient, heterogen...
SummaryHelicases use the energy derived from nucleoside triphosphate hydrolysis to unwind double hel...
AbstractPcrA helicase from Bacillus stearothermophilus is one of the smallest motor proteins structu...
The Cdc45-MCM-GINS (CMG) helicase unwinds DNA during the elongation step of eukaryotic genome duplic...
International audienceHelicases and translocases are proteins that use the energy derived from ATP h...
DNA translocation is a fundamental process in biology, required for essential cellular processes inc...
The viral DNA packaging motors are among the most powerful biological machines known, and their mech...
Many viruses employ ATP-powered motors for genome packaging. We combined genetic, biochemical, and s...
Bacteriophage T7 gp4 serves as a model protein for replicative helicases that couples deoxythymidine...
SummaryBacteriophage T7 gp4 serves as a model protein for replicative helicases that couples deoxyth...
AbstractHexameric helicases are molecular motor proteins that utilize energy obtained from ATP hydro...
Replicative helicases are essential molecular machines that utilize energy derived from NTP hydrolys...