AbstractWe investigate unfolding/folding force kinetics in DNA hairpins exhibiting two and three states with newly designed short dsDNA handles (29 bp) using optical tweezers. We show how the higher stiffness of the molecular setup moderately enhances the signal/noise ratio (SNR) in hopping experiments as compared to conventional long-handled constructs (≅700 bp). The shorter construct results in a signal of higher SNR and slower folding/unfolding kinetics, thereby facilitating the detection of otherwise fast structural transitions. A novel analysis, as far as we are aware, of the elastic properties of the molecular setup, based on high-bandwidth measurements of force fluctuations along the folded branch, reveals that the highest SNR that c...
Single-molecule experiments provide new insights into biological processes hitherto not accessible b...
AbstractNanomanipulation of individual RNA molecules, using laser optical tweezers, has made it poss...
ABSTRACT Force measurements are performed on single DNA molecules with an optical trapping interfero...
AbstractWe investigate unfolding/folding force kinetics in DNA hairpins exhibiting two and three sta...
AbstractForce measurements are performed on single DNA molecules with an optical trapping interferom...
Single-molecule experiments with optical tweezers have become an important tool to study the propert...
AbstractKnowledge of the mechanical properties of double-stranded DNA (dsDNA) is essential to unders...
AbstractPioneering studies have shown that the probability distribution of opening length for a DNA ...
ABSTRACT Knowledge of the mechanical properties of double-stranded DNA (dsDNA) is essential to under...
Single molecule techniques have provided novel mechanistic insights on biological processes such as ...
AbstractExperimental variables of optical tweezers instrumentation that affect RNA folding/unfolding...
AbstractBy exerting mechanical force, it is possible to unfold/refold RNA molecules one at a time. I...
Nucleic acid hairpins provide a powerful model system for probing the formation of secondary structu...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2020, Tutors:...
We unzip DNA molecules using optical tweezers and determine the sizes of the cooperatively unzipping...
Single-molecule experiments provide new insights into biological processes hitherto not accessible b...
AbstractNanomanipulation of individual RNA molecules, using laser optical tweezers, has made it poss...
ABSTRACT Force measurements are performed on single DNA molecules with an optical trapping interfero...
AbstractWe investigate unfolding/folding force kinetics in DNA hairpins exhibiting two and three sta...
AbstractForce measurements are performed on single DNA molecules with an optical trapping interferom...
Single-molecule experiments with optical tweezers have become an important tool to study the propert...
AbstractKnowledge of the mechanical properties of double-stranded DNA (dsDNA) is essential to unders...
AbstractPioneering studies have shown that the probability distribution of opening length for a DNA ...
ABSTRACT Knowledge of the mechanical properties of double-stranded DNA (dsDNA) is essential to under...
Single molecule techniques have provided novel mechanistic insights on biological processes such as ...
AbstractExperimental variables of optical tweezers instrumentation that affect RNA folding/unfolding...
AbstractBy exerting mechanical force, it is possible to unfold/refold RNA molecules one at a time. I...
Nucleic acid hairpins provide a powerful model system for probing the formation of secondary structu...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2020, Tutors:...
We unzip DNA molecules using optical tweezers and determine the sizes of the cooperatively unzipping...
Single-molecule experiments provide new insights into biological processes hitherto not accessible b...
AbstractNanomanipulation of individual RNA molecules, using laser optical tweezers, has made it poss...
ABSTRACT Force measurements are performed on single DNA molecules with an optical trapping interfero...