Micro-to-millisecond motions of proteins transmit pivotal signals for protein function. A powerful technique for the measurement of these motions is nuclear magnetic resonance spectroscopy. One of the most widely used methodologies for this purpose is the constant-time Carr-Purcell-Meiboom-Gill (CT-CPMG) relaxation dispersion experiment where kinetic and structural information can be obtained at atomic resolution. Extraction of accurate kinetics determined from CT-CPMG data requires refocusing frequencies that are much larger than the nuclei's exchange rate between states. We investigated the effect when fast processes are probed by CT-CPMG experiments via simulation and show that if the intrinsic relaxation rate is not known a priori the e...
Proteins and nucleic acids are highly dynamic bio-molecules that can populate a variety of conformat...
Proteins and nucleic acids are highly dynamic bio-molecules that can populate a variety of conformat...
Proteins and nucleic acids are highly dynamic bio-molecules that can populate a variety of conformat...
Micro-to-millisecond motions of proteins transmit pivotal signals for protein function. A powerful t...
Molecular dynamics play a significant role in how molecules perform their function. A critical metho...
The Carr–Purcell–Meiboom–Gill (CPMG) nuclear magnetic resonance experiment is widely used to charact...
This work examines the robustness of fitting of parameters describing conformational exchange (kex, ...
Nuclear magnetic resonance relaxation dispersion (rd) experiments provide kinetics and thermodynamic...
In the past three decades, roughly 100 fundamentally different Nuclear Magnetic Resonance (NMR) expe...
Nuclear magnetic resonance relaxation dispersion (rd) experiments provide kinetics and thermodynamic...
Internal motions in the microsecond timescale have been proposed to play an active part in a protein...
Proteins and nucleic acids are highly dynamic bio-molecules that can populate a variety of conformat...
Proteins and nucleic acids are highly dynamic bio-molecules that can populate a variety of conformat...
Protein function can be modulated or dictated by the amplitude and timescale of biomolecular motion,...
The Carr-Purcell-Meiboom-Gill (CPMG) experiment is widely used to quantitatively analyse the effects...
Proteins and nucleic acids are highly dynamic bio-molecules that can populate a variety of conformat...
Proteins and nucleic acids are highly dynamic bio-molecules that can populate a variety of conformat...
Proteins and nucleic acids are highly dynamic bio-molecules that can populate a variety of conformat...
Micro-to-millisecond motions of proteins transmit pivotal signals for protein function. A powerful t...
Molecular dynamics play a significant role in how molecules perform their function. A critical metho...
The Carr–Purcell–Meiboom–Gill (CPMG) nuclear magnetic resonance experiment is widely used to charact...
This work examines the robustness of fitting of parameters describing conformational exchange (kex, ...
Nuclear magnetic resonance relaxation dispersion (rd) experiments provide kinetics and thermodynamic...
In the past three decades, roughly 100 fundamentally different Nuclear Magnetic Resonance (NMR) expe...
Nuclear magnetic resonance relaxation dispersion (rd) experiments provide kinetics and thermodynamic...
Internal motions in the microsecond timescale have been proposed to play an active part in a protein...
Proteins and nucleic acids are highly dynamic bio-molecules that can populate a variety of conformat...
Proteins and nucleic acids are highly dynamic bio-molecules that can populate a variety of conformat...
Protein function can be modulated or dictated by the amplitude and timescale of biomolecular motion,...
The Carr-Purcell-Meiboom-Gill (CPMG) experiment is widely used to quantitatively analyse the effects...
Proteins and nucleic acids are highly dynamic bio-molecules that can populate a variety of conformat...
Proteins and nucleic acids are highly dynamic bio-molecules that can populate a variety of conformat...
Proteins and nucleic acids are highly dynamic bio-molecules that can populate a variety of conformat...