During the last decade it has become possible to derive the spatial structure of small proteins in solution using multidimensional NMR spectroscopy measurements and interpreting the data in terms of a chemical atomic model. The NMR experiments generate a set of interproton distance constraints, which is subsequently used to generate spatial structures that satisfy the experimental data. Correspondingly, crystallographic least-squares and molecular dynamics refinement is routinely applied to obtain a protein structure that is compatible with the observed structure factor amplitudes. The quality of the structure obtained will depend on the number and quality of the experimental data and on the searching power of the refinement method and prot...
The technique of two-dimensional nuclear magnetic resonance (2D-NMR) has recently assumed an active ...
The technique of two-dimensional nuclear magnetic resonance (2D-NMR) has recently assumed an active ...
The basis of all biological material is proteins. Therefore, a better understanding of the actual co...
During the last decade it has become possible to derive the spatial structure of small proteins in s...
During the last decade it has become possible to derive the spatial structure of small proteins in s...
During the last decade it has become possible to derive the spatial structure of small proteins in s...
In this paper, we propose a mixed approach for determining protein structures compatible with distan...
The method of choice to reveal the conformation of protein molecules in atomic detail has been X-ray...
Molecular dynamics simulations, often combined with sim-ulated annealing, are commonly used when cal...
Advances in hardware, sample preparation, pulse sequence development and refinement techniques have ...
Nuclear Magnetic Resonance Spectroscopy (most commonly known as NMR Spectroscopy) is used to generat...
Molecular dynamics simulations, often combined with simulated annealing, are commonly used when calc...
The technique of two-dimensional nuclear magnetic resonance (2D-NMR) has recently assumed an active ...
The technique of two-dimensional nuclear magnetic resonance (2D-NMR) has recently assumed an active ...
The technique of two-dimensional nuclear magnetic resonance (2D-NMR) has recently assumed an active ...
The technique of two-dimensional nuclear magnetic resonance (2D-NMR) has recently assumed an active ...
The technique of two-dimensional nuclear magnetic resonance (2D-NMR) has recently assumed an active ...
The basis of all biological material is proteins. Therefore, a better understanding of the actual co...
During the last decade it has become possible to derive the spatial structure of small proteins in s...
During the last decade it has become possible to derive the spatial structure of small proteins in s...
During the last decade it has become possible to derive the spatial structure of small proteins in s...
In this paper, we propose a mixed approach for determining protein structures compatible with distan...
The method of choice to reveal the conformation of protein molecules in atomic detail has been X-ray...
Molecular dynamics simulations, often combined with sim-ulated annealing, are commonly used when cal...
Advances in hardware, sample preparation, pulse sequence development and refinement techniques have ...
Nuclear Magnetic Resonance Spectroscopy (most commonly known as NMR Spectroscopy) is used to generat...
Molecular dynamics simulations, often combined with simulated annealing, are commonly used when calc...
The technique of two-dimensional nuclear magnetic resonance (2D-NMR) has recently assumed an active ...
The technique of two-dimensional nuclear magnetic resonance (2D-NMR) has recently assumed an active ...
The technique of two-dimensional nuclear magnetic resonance (2D-NMR) has recently assumed an active ...
The technique of two-dimensional nuclear magnetic resonance (2D-NMR) has recently assumed an active ...
The technique of two-dimensional nuclear magnetic resonance (2D-NMR) has recently assumed an active ...
The basis of all biological material is proteins. Therefore, a better understanding of the actual co...