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Synergistic Allostery in Multiligand-Protein Interactions

Amide hydrogen-deuterium exchange mass spectrometry is powerful for describing combinatorial coupling effects of a cooperative ligand pair binding at noncontiguous sites: adenosine at the ATP-pocket and a docking peptide (PIFtide) at the PIF-pocket, on a model protein kinase PDK1. Binding of two lig...

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Detalles Bibliográficos
Autores principales: Ghode, Abhijeet, Gross, Lissy Z.F., Tee, Wei-Ven, Guarnera, Enrico, Berezovsky, Igor N., Biondi, Ricardo M., Anand, Ganesh S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Biophysical Society 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7677135/
https://www.ncbi.nlm.nih.gov/pubmed/33086047
http://dx.doi.org/10.1016/j.bpj.2020.09.019
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author Ghode, Abhijeet
Gross, Lissy Z.F.
Tee, Wei-Ven
Guarnera, Enrico
Berezovsky, Igor N.
Biondi, Ricardo M.
Anand, Ganesh S.
author_facet Ghode, Abhijeet
Gross, Lissy Z.F.
Tee, Wei-Ven
Guarnera, Enrico
Berezovsky, Igor N.
Biondi, Ricardo M.
Anand, Ganesh S.
author_sort Ghode, Abhijeet
collection PubMed
description Amide hydrogen-deuterium exchange mass spectrometry is powerful for describing combinatorial coupling effects of a cooperative ligand pair binding at noncontiguous sites: adenosine at the ATP-pocket and a docking peptide (PIFtide) at the PIF-pocket, on a model protein kinase PDK1. Binding of two ligands to PDK1 reveal multiple hotspots of synergistic allostery with cumulative effects greater than the sum of individual effects mediated by each ligand. We quantified this synergism and ranked these hotspots using a difference in deuteration-based approach, which showed that the strongest synergistic effects were observed at three of the critical catalytic loci of kinases: the αB-αC helices, and HRD-motif loop, and DFG-motif. Additionally, we observed weaker synergistic effects at a distal GHI-subdomain locus. Synergistic changes in deuterium exchange observed at a distal site but not at the intermediate sites of the large lobe of the kinase reveals allosteric propagation in proteins to operate through two modes. Direct electrostatic interactions between polar and charged amino acids that mediate targeted relay of allosteric signals, and diffused relay of allosteric signals through soft matter-like hydrophobic core amino acids. Furthermore, we provide evidence that the conserved β-3 strand lysine of protein kinases (Lys111 of PDK1) functions as an integrator node to coordinate allosteric coupling of the two ligand-binding sites. It maintains indirect interactions with the ATP-pocket and mediates a critical salt bridge with a glutamate (Glu130) of αC helix, which is conserved across all kinases. In summary, allosteric propagation in cooperative, dual-liganded enzyme targets is bidirectional and synergistic and offers a strategy for combinatorial drug development.
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spelling pubmed-76771352021-11-03 Synergistic Allostery in Multiligand-Protein Interactions Ghode, Abhijeet Gross, Lissy Z.F. Tee, Wei-Ven Guarnera, Enrico Berezovsky, Igor N. Biondi, Ricardo M. Anand, Ganesh S. Biophys J Articles Amide hydrogen-deuterium exchange mass spectrometry is powerful for describing combinatorial coupling effects of a cooperative ligand pair binding at noncontiguous sites: adenosine at the ATP-pocket and a docking peptide (PIFtide) at the PIF-pocket, on a model protein kinase PDK1. Binding of two ligands to PDK1 reveal multiple hotspots of synergistic allostery with cumulative effects greater than the sum of individual effects mediated by each ligand. We quantified this synergism and ranked these hotspots using a difference in deuteration-based approach, which showed that the strongest synergistic effects were observed at three of the critical catalytic loci of kinases: the αB-αC helices, and HRD-motif loop, and DFG-motif. Additionally, we observed weaker synergistic effects at a distal GHI-subdomain locus. Synergistic changes in deuterium exchange observed at a distal site but not at the intermediate sites of the large lobe of the kinase reveals allosteric propagation in proteins to operate through two modes. Direct electrostatic interactions between polar and charged amino acids that mediate targeted relay of allosteric signals, and diffused relay of allosteric signals through soft matter-like hydrophobic core amino acids. Furthermore, we provide evidence that the conserved β-3 strand lysine of protein kinases (Lys111 of PDK1) functions as an integrator node to coordinate allosteric coupling of the two ligand-binding sites. It maintains indirect interactions with the ATP-pocket and mediates a critical salt bridge with a glutamate (Glu130) of αC helix, which is conserved across all kinases. In summary, allosteric propagation in cooperative, dual-liganded enzyme targets is bidirectional and synergistic and offers a strategy for combinatorial drug development. The Biophysical Society 2020-11-03 2020-09-28 /pmc/articles/PMC7677135/ /pubmed/33086047 http://dx.doi.org/10.1016/j.bpj.2020.09.019 Text en © 2020 Biophysical Society. http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Articles
Ghode, Abhijeet
Gross, Lissy Z.F.
Tee, Wei-Ven
Guarnera, Enrico
Berezovsky, Igor N.
Biondi, Ricardo M.
Anand, Ganesh S.
Synergistic Allostery in Multiligand-Protein Interactions
title Synergistic Allostery in Multiligand-Protein Interactions
title_full Synergistic Allostery in Multiligand-Protein Interactions
title_fullStr Synergistic Allostery in Multiligand-Protein Interactions
title_full_unstemmed Synergistic Allostery in Multiligand-Protein Interactions
title_short Synergistic Allostery in Multiligand-Protein Interactions
title_sort synergistic allostery in multiligand-protein interactions
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7677135/
https://www.ncbi.nlm.nih.gov/pubmed/33086047
http://dx.doi.org/10.1016/j.bpj.2020.09.019
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