In-Cell NMR: Analysis of Protein–Small Molecule Interactions, Metabolic Processes, and Protein Phosphorylation
From The DNP-NMR Blog:
In-Cell NMR: Analysis of Protein–Small Molecule Interactions, Metabolic Processes, and Protein Phosphorylation
Kumar, Amit, Lars Kuhn, and Jochen Balbach. “In-Cell NMR: Analysis of Protein–Small Molecule Interactions, Metabolic Processes, and Protein Phosphorylation.” International Journal of Molecular Sciences 20, no. 2 (January 17, 2019): 378.
https://doi.org/10.3390/ijms20020378.
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Authors: Arntson KE, Pomerantz WC
Abstract
The 19F isotope is 100% naturally abundant and is the second most sensitive and stable NMR-active nucleus. Unlike the ubiquitous hydrogen atom, fluorine is nearly absent in biological systems, making it a unique bioorthogonal atom for probing molecular interactions in biology. Over 73...
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Abstract
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Antidiabetic effects of glucokinase regulatory protein small-molecule disruptors - Nature.com
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Antidiabetic effects of glucokinase regulatory protein small-molecule disruptors
Nature.com
In hepatocytes, GK regulates glucose uptake and glycogen synthesis, suppresses glucose production3, 5, and is subject to the endogenous inhibitor GK regulatory protein (GKRP)6, 7, 8. During fasting, GKRP binds, inactivates and ..... 1H-, 13C- and 19F ...
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Methods Mol Biol. 2013;1008:389-413
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Abstract
Nuclear magnetic resonance (NMR) is well suited to probing the interactions between ligands and macromolecular receptors. It is a truly label-free technique, requiring only the presence of atoms (usually (1)H or (19)F) which give rise to observable resonances on either the ligand or the receptor. A number of parameters associated with these resonances can...
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[CNS Yahoo group] How to add bond between protein residue and a small molecule in CNS
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Dear All, I'm stuck in a step where in i need to connect a bond an amino acid residue and a small molecule in CNS Thank you. Joseph
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Methods Enzymol. 2011;493:21-60
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