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A single evolutionarily divergent mutation determines the different FAD-binding affinities of human and rat NQO1 due to site-specific phosphorylation

FEBS Lett. 2021-11; 
Juan Luis Pacheco-Garcia, Dmitry Loginov, Bruno Rizzuti, Pavla Vankova, Jose L Neira, Daniel Kavan, Noel Mesa-Torres, Rita Guzzi, Petr Man, Angel L Pey
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Gene Synthesis … Page 5. This article is protected by copyright. All rights reserved pET-15b vector by GenScript (Leiden, The Netherlands) and used as template to generate by site- directed mutagenesis in rNQO1 the mutants R80H, S82D and R80H-S82D. Expression in and … Get A Quote

摘要

The phosphomimetic mutation S82D in the cancer-associated, FAD-dependent human NADP(H):quinone oxidoreductase 1 (hNQO1) causes a decrease in flavin-adenine dinucleotide-binding affinity and intracellular stability. We test in this work whether the evolutionarily recent neutral mutation R80H in the vicinity of S82 may alter the strong functional effects of S82 phosphorylation through electrostatic interactions. We show using biophysical and bioinformatic analyses that the reverse mutation H80R prevents the effects of S82D phosphorylation on hNQO1 by modulating the local stability. Consistently, in rat NQO1 (rNQO1) which contains R80, the effects of phosphorylation were milder, resembling the behaviour found in h... More

关键词

epistasis, flavoprotein, molecular evolution, protein phosphorylation