AbstractForce measurements are performed on single DNA molecules with an optical trapping interferometer that combines subpiconewton force resolution and millisecond time resolution. A molecular construction is prepared for mechanically unzipping several thousand-basepair DNA sequences in an in vitro configuration. The force signals corresponding to opening and closing the double helix at low velocity are studied experimentally and are compared to calculations assuming thermal equilibrium. We address the effect of the stiffness on the basepair sensitivity and consider fluctuations in the force signal. With respect to earlier work performed with soft microneedles, we obtain a very significant increase in basepair sensitivity: presently, sequ...
AbstractUsing a modified atomic force microscope (AFM), individual double-stranded (ds) DNA molecule...
Single molecule force clamp experiments are widely used to investigate how enzymes, molecular motors...
We studied the thermal fluctuations of single DNA molecules with a novel optical tweezer based force...
ABSTRACT Force measurements are performed on single DNA molecules with an optical trapping interfero...
AbstractDNA is partly denatured in vitro by applying a force that mechanically separates the two str...
We unzip DNA molecules using optical tweezers and determine the sizes of the cooperatively unzipping...
have prepared molecular constructions which allow us to attach the two complementary strands of one ...
Force-extension (F-x) relationships were measured for single molecules of DNA under a variety of buf...
We theoretically analyze the force signal expected during unzipping through a single double-stranded...
AbstractKnowledge of the mechanical properties of double-stranded DNA (dsDNA) is essential to unders...
AbstractDNA unzipping, the separation of its double helix into single strands, is crucial in modulat...
Single-molecule force spectroscopy has brought many new insights into nanoscale biology, from the fu...
ABSTRACT Knowledge of the mechanical properties of double-stranded DNA (dsDNA) is essential to under...
AbstractWe investigate unfolding/folding force kinetics in DNA hairpins exhibiting two and three sta...
The unzipping transition under the influence of external force of a dsDNA molecule has been studied ...
AbstractUsing a modified atomic force microscope (AFM), individual double-stranded (ds) DNA molecule...
Single molecule force clamp experiments are widely used to investigate how enzymes, molecular motors...
We studied the thermal fluctuations of single DNA molecules with a novel optical tweezer based force...
ABSTRACT Force measurements are performed on single DNA molecules with an optical trapping interfero...
AbstractDNA is partly denatured in vitro by applying a force that mechanically separates the two str...
We unzip DNA molecules using optical tweezers and determine the sizes of the cooperatively unzipping...
have prepared molecular constructions which allow us to attach the two complementary strands of one ...
Force-extension (F-x) relationships were measured for single molecules of DNA under a variety of buf...
We theoretically analyze the force signal expected during unzipping through a single double-stranded...
AbstractKnowledge of the mechanical properties of double-stranded DNA (dsDNA) is essential to unders...
AbstractDNA unzipping, the separation of its double helix into single strands, is crucial in modulat...
Single-molecule force spectroscopy has brought many new insights into nanoscale biology, from the fu...
ABSTRACT Knowledge of the mechanical properties of double-stranded DNA (dsDNA) is essential to under...
AbstractWe investigate unfolding/folding force kinetics in DNA hairpins exhibiting two and three sta...
The unzipping transition under the influence of external force of a dsDNA molecule has been studied ...
AbstractUsing a modified atomic force microscope (AFM), individual double-stranded (ds) DNA molecule...
Single molecule force clamp experiments are widely used to investigate how enzymes, molecular motors...
We studied the thermal fluctuations of single DNA molecules with a novel optical tweezer based force...