Despite the many protein structures solved successfully by nuclear magnetic resonance (NMR) spectroscopy, quality control of NMR structures is still by far not as well established and standardized as in crystallography. Therefore, there is still the need for new, independent, and unbiased evaluation tools to identify problematic parts and in the best case also to give guidelines that how to fix them. We present here, quantum chemical calculations of NMR chemical shifts for many proteins based on our fragment-based quantum chemical method: the adjustable density matrix assembler (ADMA). These results show that 13 C chemical shifts of reasonable accuracy can be obtained that can already provide a powerful measure for the structure validation....
NMR chemical shifts are exquisitely sensitive probes for conformation and dynamics in molecules and ...
In this tutorial review, we discuss the utilization of chemical shift information as well as ab init...
In this tutorial review, we discuss the utilization of chemical shift information as well as ab init...
It has been demonstrated that the fragmentation scheme of our adjustable density matrix assembler (A...
Fragment-based quantum chemical calculations based on our adjustable density matrix assembler (ADMA)...
Fragment-based quantum chemical calculations based on our adjustable density matrix assembler (ADMA)...
Fragment-based quantum chemical calculations are able to accurately calculate NMR chemical shifts ev...
In this tutorial review, we discuss the utilization of chemical shift information as well as ab init...
NMR chemical shift predictions based on empirical methods are nowadays indispensable tools during re...
NMR chemical shift predictions based on empirical methods are nowadays indispensable tools during re...
NMR chemical shift predictions based on empirical methods are nowadays indispensable tools during re...
The structural sensitivity of NMR chemical shifts as computed by quantum chemical methods is compare...
In this study, the automated fragmentation quantum mechanics/molecular mechanics (AF-QM/MM) method w...
Abstract When using nuclear magnetic resonance (NMR) to assist in chemical identification in complex...
<p>In this study, the automated fragmentation quantum mechanics/molecular mechanics (AF-QM/MM) metho...
NMR chemical shifts are exquisitely sensitive probes for conformation and dynamics in molecules and ...
In this tutorial review, we discuss the utilization of chemical shift information as well as ab init...
In this tutorial review, we discuss the utilization of chemical shift information as well as ab init...
It has been demonstrated that the fragmentation scheme of our adjustable density matrix assembler (A...
Fragment-based quantum chemical calculations based on our adjustable density matrix assembler (ADMA)...
Fragment-based quantum chemical calculations based on our adjustable density matrix assembler (ADMA)...
Fragment-based quantum chemical calculations are able to accurately calculate NMR chemical shifts ev...
In this tutorial review, we discuss the utilization of chemical shift information as well as ab init...
NMR chemical shift predictions based on empirical methods are nowadays indispensable tools during re...
NMR chemical shift predictions based on empirical methods are nowadays indispensable tools during re...
NMR chemical shift predictions based on empirical methods are nowadays indispensable tools during re...
The structural sensitivity of NMR chemical shifts as computed by quantum chemical methods is compare...
In this study, the automated fragmentation quantum mechanics/molecular mechanics (AF-QM/MM) method w...
Abstract When using nuclear magnetic resonance (NMR) to assist in chemical identification in complex...
<p>In this study, the automated fragmentation quantum mechanics/molecular mechanics (AF-QM/MM) metho...
NMR chemical shifts are exquisitely sensitive probes for conformation and dynamics in molecules and ...
In this tutorial review, we discuss the utilization of chemical shift information as well as ab init...
In this tutorial review, we discuss the utilization of chemical shift information as well as ab init...