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Targeting Protein-Protein Interactions with Trimeric Ligands: High Affinity Inhibitors of the MAGUK Protein Family

PDZ domains in general, and those of PSD-95 in particular, are emerging as promising drug targets for diseases such as ischemic stroke. We have previously shown that dimeric ligands that simultaneously target PDZ1 and PDZ2 of PSD-95 are highly potent inhibitors of PSD-95. However, PSD-95 and the rel...

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Autores principales: Nissen, Klaus B., Haugaard-Kedström, Linda M., Wilbek, Theis S., Nielsen, Line S., Åberg, Emma, Kristensen, Anders S., Bach, Anders, Jemth, Per, Strømgaard, Kristian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4319893/
https://www.ncbi.nlm.nih.gov/pubmed/25658767
http://dx.doi.org/10.1371/journal.pone.0117668
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author Nissen, Klaus B.
Haugaard-Kedström, Linda M.
Wilbek, Theis S.
Nielsen, Line S.
Åberg, Emma
Kristensen, Anders S.
Bach, Anders
Jemth, Per
Strømgaard, Kristian
author_facet Nissen, Klaus B.
Haugaard-Kedström, Linda M.
Wilbek, Theis S.
Nielsen, Line S.
Åberg, Emma
Kristensen, Anders S.
Bach, Anders
Jemth, Per
Strømgaard, Kristian
author_sort Nissen, Klaus B.
collection PubMed
description PDZ domains in general, and those of PSD-95 in particular, are emerging as promising drug targets for diseases such as ischemic stroke. We have previously shown that dimeric ligands that simultaneously target PDZ1 and PDZ2 of PSD-95 are highly potent inhibitors of PSD-95. However, PSD-95 and the related MAGUK proteins contain three consecutive PDZ domains, hence we envisioned that targeting all three PDZ domains simultaneously would lead to more potent and potentially more specific interactions with the MAGUK proteins. Here we describe the design, synthesis and characterization of a series of trimeric ligands targeting all three PDZ domains of PSD-95 and the related MAGUK proteins, PSD-93, SAP-97 and SAP-102. Using our dimeric ligands targeting the PDZ1-2 tandem as starting point, we designed novel trimeric ligands by introducing a PDZ3-binding peptide moiety via a cysteine-derivatized NPEG linker. The trimeric ligands generally displayed increased affinities compared to the dimeric ligands in fluorescence polarization binding experiments and optimized trimeric ligands showed low nanomolar inhibition towards the four MAGUK proteins, thus being the most potent inhibitors described. Kinetic experiments using stopped-flow spectrometry showed that the increase in affinity is caused by a decrease in the dissociation rate of the trimeric ligand as compared to the dimeric ligands, likely reflecting the lower probability of simultaneous dissociation of all three PDZ ligands. Thus, we have provided novel inhibitors of the MAGUK proteins with exceptionally high affinity, which can be used to further elucidate the therapeutic potential of these proteins.
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spelling pubmed-43198932015-02-18 Targeting Protein-Protein Interactions with Trimeric Ligands: High Affinity Inhibitors of the MAGUK Protein Family Nissen, Klaus B. Haugaard-Kedström, Linda M. Wilbek, Theis S. Nielsen, Line S. Åberg, Emma Kristensen, Anders S. Bach, Anders Jemth, Per Strømgaard, Kristian PLoS One Research Article PDZ domains in general, and those of PSD-95 in particular, are emerging as promising drug targets for diseases such as ischemic stroke. We have previously shown that dimeric ligands that simultaneously target PDZ1 and PDZ2 of PSD-95 are highly potent inhibitors of PSD-95. However, PSD-95 and the related MAGUK proteins contain three consecutive PDZ domains, hence we envisioned that targeting all three PDZ domains simultaneously would lead to more potent and potentially more specific interactions with the MAGUK proteins. Here we describe the design, synthesis and characterization of a series of trimeric ligands targeting all three PDZ domains of PSD-95 and the related MAGUK proteins, PSD-93, SAP-97 and SAP-102. Using our dimeric ligands targeting the PDZ1-2 tandem as starting point, we designed novel trimeric ligands by introducing a PDZ3-binding peptide moiety via a cysteine-derivatized NPEG linker. The trimeric ligands generally displayed increased affinities compared to the dimeric ligands in fluorescence polarization binding experiments and optimized trimeric ligands showed low nanomolar inhibition towards the four MAGUK proteins, thus being the most potent inhibitors described. Kinetic experiments using stopped-flow spectrometry showed that the increase in affinity is caused by a decrease in the dissociation rate of the trimeric ligand as compared to the dimeric ligands, likely reflecting the lower probability of simultaneous dissociation of all three PDZ ligands. Thus, we have provided novel inhibitors of the MAGUK proteins with exceptionally high affinity, which can be used to further elucidate the therapeutic potential of these proteins. Public Library of Science 2015-02-06 /pmc/articles/PMC4319893/ /pubmed/25658767 http://dx.doi.org/10.1371/journal.pone.0117668 Text en © 2015 Nissen et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Nissen, Klaus B.
Haugaard-Kedström, Linda M.
Wilbek, Theis S.
Nielsen, Line S.
Åberg, Emma
Kristensen, Anders S.
Bach, Anders
Jemth, Per
Strømgaard, Kristian
Targeting Protein-Protein Interactions with Trimeric Ligands: High Affinity Inhibitors of the MAGUK Protein Family
title Targeting Protein-Protein Interactions with Trimeric Ligands: High Affinity Inhibitors of the MAGUK Protein Family
title_full Targeting Protein-Protein Interactions with Trimeric Ligands: High Affinity Inhibitors of the MAGUK Protein Family
title_fullStr Targeting Protein-Protein Interactions with Trimeric Ligands: High Affinity Inhibitors of the MAGUK Protein Family
title_full_unstemmed Targeting Protein-Protein Interactions with Trimeric Ligands: High Affinity Inhibitors of the MAGUK Protein Family
title_short Targeting Protein-Protein Interactions with Trimeric Ligands: High Affinity Inhibitors of the MAGUK Protein Family
title_sort targeting protein-protein interactions with trimeric ligands: high affinity inhibitors of the maguk protein family
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4319893/
https://www.ncbi.nlm.nih.gov/pubmed/25658767
http://dx.doi.org/10.1371/journal.pone.0117668
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