AbstractMechanical forces play a key role in crucial cellular processes involving force-bearing biomolecules, as well as in novel single-molecule pulling experiments. We present an exact method that enables one to extrapolate, to low (or zero) forces, entire time-correlation functions and kinetic rate constants from the conformational dynamics either simulated numerically or measured experimentally at a single, relatively higher, external force. The method has twofold relevance: 1), to extrapolate the kinetics at physiological force conditions from molecular dynamics trajectories generated at higher forces that accelerate conformational transitions; and 2), to extrapolate unfolding rates from experimental force-extension single-molecule cur...
In typical force spectroscopy experiments, a small biomolecule is attached to a soft polymer linker ...
We present a unified framework for extracting kinetic information from single-molecule pulling exper...
ABSTRACT We present, to our knowledge, a new theory that takes internal dynamics of proteins into ac...
AbstractMechanical forces play a key role in crucial cellular processes involving force-bearing biom...
The folding and unfolding kinetics of single molecules, such as proteins or nucleic acids, can be ex...
AbstractMechanical forces exerted by laser tweezers or atomic force microscopes can be used to drive...
ABSTRACT Mechanical forces exerted by laser tweezers or atomic force microscopes can be used to driv...
The work presented in this dissertation focuses on the kinetics of biomolecular reactions under mech...
AbstractSingle-molecule force spectroscopy is providing unique, and sometimes unexpected, insights i...
AbstractStatistical analyses of forced unfolding data for protein tandems, i.e., unfolding forces (f...
ABSTRACT Statistical analyses of forced unfolding data for protein tandems, i.e., unfolding forces (...
Single-molecule force spectroscopy has opened a new field of research in molecular biophysics and bi...
Single-molecule force spectroscopy has opened a new field of research in molecular biophysics and bi...
Single-molecule pulling experiments are widely used for studying the structure, dynamics, and functi...
Single-molecule force spectroscopy is providing unique, and sometimes unexpected, insights into the ...
In typical force spectroscopy experiments, a small biomolecule is attached to a soft polymer linker ...
We present a unified framework for extracting kinetic information from single-molecule pulling exper...
ABSTRACT We present, to our knowledge, a new theory that takes internal dynamics of proteins into ac...
AbstractMechanical forces play a key role in crucial cellular processes involving force-bearing biom...
The folding and unfolding kinetics of single molecules, such as proteins or nucleic acids, can be ex...
AbstractMechanical forces exerted by laser tweezers or atomic force microscopes can be used to drive...
ABSTRACT Mechanical forces exerted by laser tweezers or atomic force microscopes can be used to driv...
The work presented in this dissertation focuses on the kinetics of biomolecular reactions under mech...
AbstractSingle-molecule force spectroscopy is providing unique, and sometimes unexpected, insights i...
AbstractStatistical analyses of forced unfolding data for protein tandems, i.e., unfolding forces (f...
ABSTRACT Statistical analyses of forced unfolding data for protein tandems, i.e., unfolding forces (...
Single-molecule force spectroscopy has opened a new field of research in molecular biophysics and bi...
Single-molecule force spectroscopy has opened a new field of research in molecular biophysics and bi...
Single-molecule pulling experiments are widely used for studying the structure, dynamics, and functi...
Single-molecule force spectroscopy is providing unique, and sometimes unexpected, insights into the ...
In typical force spectroscopy experiments, a small biomolecule is attached to a soft polymer linker ...
We present a unified framework for extracting kinetic information from single-molecule pulling exper...
ABSTRACT We present, to our knowledge, a new theory that takes internal dynamics of proteins into ac...