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Elucidating specificity of an allosteric inhibitor WNK476 among With-No-Lysine kinase isoforms using molecular dynamic simulations.
- Source :
-
Chemical biology & drug design [Chem Biol Drug Des] 2021 Sep; Vol. 98 (3), pp. 405-420. Date of Electronic Publication: 2021 Jun 05. - Publication Year :
- 2021
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Abstract
- Specifically targeting the With-No-Lysine (WNK1) kinase, which is implicated in hypertension, renders a significant challenge in discovering competitive inhibitors due to the highly conserved ATP-binding pocket. However, an allosteric inhibitor may impart high specificity against the WNK kinase isoforms since it targets the less conserved site and can provide greater efficacy even under high physiological ATP concentration. In the current study, we have investigated the structural and energetic basis of the specificity of the allosteric inhibitor WNK476 against WNK kinase isoforms by combining molecular dynamics simulations and free energy calculations using molecular mechanics Poisson-Boltzmann surface area. Our study reveals that the conformational stabilization of αC-helix near the allosteric binding site, including conformational changes in activation and glycine-rich loop regions, favors the specificity of WNK476 toward WNK1. The MM/PBSA calculations suggest that the non-polar contribution from hydrophobic residues and polar solvation energy influences WNK/WNK476 complexation. Despite more favorable electrostatic and van der Waals interactions in WNK2/WNK476, WNK476 is more potent against WNK1 due to the lower contribution of disfavoring components-polar solvation and entropy. Further, we have identified that the hydrophobic residues of DLG, αC-helix, β <subscript>4</subscript> , and β <subscript>5</subscript> regions, and H-bond network near the β <subscript>4</subscript> strand play a critical role in the specificity of WNK476 against WNK1. Finally, our study reveals that residues Leu <superscript>272</superscript> , Val <superscript>281</superscript> , Phe <superscript>283</superscript> , and Leu <superscript>369</superscript> of WNK1 actively contribute to the overall hydrophobic interactions for WNK1/WNK476. Overall, our study might help in the rational design of novel allosteric inhibitors against hypertension.<br /> (© 2021 John Wiley & Sons A/S.)
- Subjects :
- Allosteric Site
Binding Sites
Humans
Hydrogen Bonding
Principal Component Analysis
Protein Binding
Protein Isoforms antagonists & inhibitors
Protein Isoforms metabolism
Protein Kinase Inhibitors metabolism
Thermodynamics
WNK Lysine-Deficient Protein Kinase 1 metabolism
Molecular Dynamics Simulation
Protein Kinase Inhibitors chemistry
WNK Lysine-Deficient Protein Kinase 1 antagonists & inhibitors
Subjects
Details
- Language :
- English
- ISSN :
- 1747-0285
- Volume :
- 98
- Issue :
- 3
- Database :
- MEDLINE
- Journal :
- Chemical biology & drug design
- Publication Type :
- Academic Journal
- Accession number :
- 33969941
- Full Text :
- https://doi.org/10.1111/cbdd.13863