SummaryWe introduce a procedure to determine the structures of proteins by incorporating NMR chemical shifts as structural restraints in molecular dynamics simulations. In this approach, the chemical shifts are expressed as differentiable functions of the atomic coordinates and used to compute forces to generate trajectories that lead to the reduction of the differences between experimental and calculated chemical shifts. We show that this strategy enables the folding of a set of proteins with representative topologies starting from partially denatured initial conformations without the use of additional experimental information. This method also enables the straightforward combination of chemical shifts with other standard NMR restraints, i...
In this investigation, semiempirical NMR chemical shift prediction methods are used to evaluate the ...
Nuclear magnetic resonance spectroscopy (NMR) is one of the most powerful biophysical techniques fo...
The biological function of a protein is strongly tied to the ensemble of three-dimensional conformat...
SummaryWe introduce a procedure to determine the structures of proteins by incorporating NMR chemica...
It has been recently proposed that NMR chemical shifts can be used as replica-averaged structural re...
It has been recently proposed that NMR chemical shifts can be used as replica-averaged structural re...
Protein motions play a critical role in many biological processes, such as enzyme catalysis, alloste...
An atomic resolution description of protein flexibility is essential for understanding the role that...
Following the recognition that NMR chemical shifts can be used for protein structure determination, ...
Following the recognition that NMR chemical shifts can be used for protein structure determination, ...
Following the recognition that NMR chemical shifts can be used for protein structure determination, ...
In this tutorial review, we discuss the utilization of chemical shift information as well as ab init...
Recent improvements in the accuracy of structure-based methods for the prediction of nuclear magneti...
Molecular dynamics ensembles of proteins generated by different force fields (AMBER ff99, ff99SB, ff...
International audienceNuclear magnetic resonance (NMR) spectroscopy provides detailed understanding ...
In this investigation, semiempirical NMR chemical shift prediction methods are used to evaluate the ...
Nuclear magnetic resonance spectroscopy (NMR) is one of the most powerful biophysical techniques fo...
The biological function of a protein is strongly tied to the ensemble of three-dimensional conformat...
SummaryWe introduce a procedure to determine the structures of proteins by incorporating NMR chemica...
It has been recently proposed that NMR chemical shifts can be used as replica-averaged structural re...
It has been recently proposed that NMR chemical shifts can be used as replica-averaged structural re...
Protein motions play a critical role in many biological processes, such as enzyme catalysis, alloste...
An atomic resolution description of protein flexibility is essential for understanding the role that...
Following the recognition that NMR chemical shifts can be used for protein structure determination, ...
Following the recognition that NMR chemical shifts can be used for protein structure determination, ...
Following the recognition that NMR chemical shifts can be used for protein structure determination, ...
In this tutorial review, we discuss the utilization of chemical shift information as well as ab init...
Recent improvements in the accuracy of structure-based methods for the prediction of nuclear magneti...
Molecular dynamics ensembles of proteins generated by different force fields (AMBER ff99, ff99SB, ff...
International audienceNuclear magnetic resonance (NMR) spectroscopy provides detailed understanding ...
In this investigation, semiempirical NMR chemical shift prediction methods are used to evaluate the ...
Nuclear magnetic resonance spectroscopy (NMR) is one of the most powerful biophysical techniques fo...
The biological function of a protein is strongly tied to the ensemble of three-dimensional conformat...