[NMR paper] Toward protein NMR at physiological concentrations by hyperpolarized water-Finding and mapping uncharted conformational spaces
Toward protein NMR at physiological concentrations by hyperpolarized water-Finding and mapping uncharted conformational spaces
Nuclear magnetic resonance (NMR) spectroscopy is a key method for determining the structural dynamics of proteins in their native solution state. However, the low sensitivity of NMR typically necessitates nonphysiologically high sample concentrations, which often limit the relevance of the recorded data. We show how to use hyperpolarized water by dissolution dynamic nuclear polarization (DDNP) to acquire protein spectra at concentrations of 1 ?M within seconds and...
Partial characterization of Plasmodium falciparum protein kinase ABCK2 (PfABCK2) - Technology Networks
Partial characterization of Plasmodium falciparum protein kinase ABCK2 (PfABCK2) - Technology Networks
Partial characterization of Plasmodium falciparum protein kinase ABCK2 (PfABCK2) Technology NetworksMalaria is a major threat to the public health worldwide as it is effecting populations in tropical and subtropical areas globally. Among those populations are ...
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X-ray Laser Opens New View on Alzheimer Proteins | Technology ... - Technology Networks
X-ray Laser Opens New View on Alzheimer Proteins | Technology ... - Technology Networks
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X-ray Laser Opens New View on Alzheimer Proteins | Technology ...
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Protein Motion Questions Unravelled - Technology Networks
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Protein Motion Questions Unravelled
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The researchers took starting structural information based on nuclear magnetic resonance or X-ray techniques, and simulated 14 behavioural dynamics in 12 proteins in times ranging from 50 nanoseconds to 1.23 milliseconds. In short, the researchers ...
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Protein Motion Questions Unravelled - Technology Networks
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New Approach for Membrane Protein Crystallization - Technology Networks
New Approach for Membrane Protein Crystallization - Technology Networks
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New Approach for Membrane Protein Crystallization
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Nanodiscs are also widely used to study the structure of membrane proteins using nuclear magnetic resonance (NMR), cryo-electron microscopy, atomic force microscopy, and other methods. Direct use of membrane proteins embedded in nanodiscs for ...