ChemMedChem · 2018 · 34 citations · 37 references
Direct targeting of intracellular Gα subunits of G protein-coupled receptors by chemical tools is a challenging task in current pharmacological studies and in the development of novel therapeutic approaches. In this study we analyzed novel FR900359-based analogs from natural sources, synthetic cyclic peptides, as well as all so-far known G<sub>q</sub> α inhibitors in a comprehensive study to devise a strategy for the elucidation of characteristics that determine interactions with and inhibition of G<sub>q</sub> in the specific FR/YM-binding pocket. Using 2D NMR spectroscopy and molecular docking we identified unique features in the macrocyclic structures responsible for binding to the target protein correlating with inhibitory activity. While all novel compounds were devoid of effects on G<sub>i</sub> and G<sub>s</sub> proteins, no inhibitor surpassed the biological activity of FR. This raises the question of whether depsipeptides such as FR already represent valuable chemical tools for specific inhibition of G<sub>q</sub> and, at the same time, are suitable natural lead structures for the development of novel compounds to target Gα subunits other than G<sub>q</sub> .
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A smooth particle mesh Ewald method
Ulrich Essmann, L. Perera, Max L. Berkowitz et al. · The Journal of Chemical Physics · 1995 · 22.3K citations
Development and testing of a general amber force field
Junmei Wang, Romain M. Wolf, James W. Caldwell et al. · Journal of Computational Chemistry · 2004 · 18.8K citations
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James Maier, Carmenza Martinez, Koushik Kasavajhala et al. · Journal of Chemical Theory and Computation · 2015 · 10.6K citations · Full text
Structural Bioinformatics, Biomolecular Structure Prediction, Amber Ff12sb Parameter +24