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Chemically diverse activity-based probes with unexpected inhibitory mechanisms targeting trypsin-like serine proteases

Activity-based probes (ABP) are molecules that bind covalently to the active form of an enzyme family, making them an attractive tool for target and biomarker identification and drug discovery. The present study describes the synthesis and biochemical characterization of novel activity-based probes...

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Autores principales: Ramos-Llorca, Alba, Decraecker, Lisse, Cacheux, Valérie M. Y., Zeiburlina, Irena, De bruyn, Michelle, Battut, Louise, Moreno-Cinos, Carlos, Ceradini, Davide, Espinosa, Eric, Dietrich, Gilles, Berg, Maya, De Meester, Ingrid, Van Der Veken, Pieter, Boeckxstaens, Guy, Lambeir, Anne-Marie, Denadai-Souza, Alexandre, Augustyns, Koen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9849758/
https://www.ncbi.nlm.nih.gov/pubmed/36688031
http://dx.doi.org/10.3389/fchem.2022.1089959
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author Ramos-Llorca, Alba
Decraecker, Lisse
Cacheux, Valérie M. Y.
Zeiburlina, Irena
De bruyn, Michelle
Battut, Louise
Moreno-Cinos, Carlos
Ceradini, Davide
Espinosa, Eric
Dietrich, Gilles
Berg, Maya
De Meester, Ingrid
Van Der Veken, Pieter
Boeckxstaens, Guy
Lambeir, Anne-Marie
Denadai-Souza, Alexandre
Augustyns, Koen
author_facet Ramos-Llorca, Alba
Decraecker, Lisse
Cacheux, Valérie M. Y.
Zeiburlina, Irena
De bruyn, Michelle
Battut, Louise
Moreno-Cinos, Carlos
Ceradini, Davide
Espinosa, Eric
Dietrich, Gilles
Berg, Maya
De Meester, Ingrid
Van Der Veken, Pieter
Boeckxstaens, Guy
Lambeir, Anne-Marie
Denadai-Souza, Alexandre
Augustyns, Koen
author_sort Ramos-Llorca, Alba
collection PubMed
description Activity-based probes (ABP) are molecules that bind covalently to the active form of an enzyme family, making them an attractive tool for target and biomarker identification and drug discovery. The present study describes the synthesis and biochemical characterization of novel activity-based probes targeting trypsin-like serine proteases. We developed an extensive library of activity-based probes with “clickable” affinity tags and a diaryl phosphonate warhead. A wide diversity was achieved by including natural amino acid analogs as well as basic polar residues as side chains. A detailed enzymatic characterization was performed in a panel of trypsin-like serine proteases. Their inhibitory potencies and kinetic profile were examined, and their IC(50) values, mechanism of inhibition, and kinetic constants were determined. The activity-based probes with a benzyl guanidine side chain showed the highest inhibitory effects in the panel. Surprisingly, some of the high-affinity probes presented a reversible inhibitory mechanism. On the other hand, probes with different side chains exhibited the expected irreversible mechanism. For the first time, we demonstrate that not only irreversible probes but also reversible probes can tightly label recombinant proteases and proteases released from human mast cells. Even under denaturing SDS-PAGE conditions, reversible slow-tight-binding probes can label proteases due to the formation of high-affinity complexes and slow dissociation rates. This unexpected finding will transform the view on the required irreversible nature of activity-based probes. The diversity of this library of activity-based probes combined with a detailed enzyme kinetic characterization will advance their applications in proteomic studies and drug discovery.
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spelling pubmed-98497582023-01-20 Chemically diverse activity-based probes with unexpected inhibitory mechanisms targeting trypsin-like serine proteases Ramos-Llorca, Alba Decraecker, Lisse Cacheux, Valérie M. Y. Zeiburlina, Irena De bruyn, Michelle Battut, Louise Moreno-Cinos, Carlos Ceradini, Davide Espinosa, Eric Dietrich, Gilles Berg, Maya De Meester, Ingrid Van Der Veken, Pieter Boeckxstaens, Guy Lambeir, Anne-Marie Denadai-Souza, Alexandre Augustyns, Koen Front Chem Chemistry Activity-based probes (ABP) are molecules that bind covalently to the active form of an enzyme family, making them an attractive tool for target and biomarker identification and drug discovery. The present study describes the synthesis and biochemical characterization of novel activity-based probes targeting trypsin-like serine proteases. We developed an extensive library of activity-based probes with “clickable” affinity tags and a diaryl phosphonate warhead. A wide diversity was achieved by including natural amino acid analogs as well as basic polar residues as side chains. A detailed enzymatic characterization was performed in a panel of trypsin-like serine proteases. Their inhibitory potencies and kinetic profile were examined, and their IC(50) values, mechanism of inhibition, and kinetic constants were determined. The activity-based probes with a benzyl guanidine side chain showed the highest inhibitory effects in the panel. Surprisingly, some of the high-affinity probes presented a reversible inhibitory mechanism. On the other hand, probes with different side chains exhibited the expected irreversible mechanism. For the first time, we demonstrate that not only irreversible probes but also reversible probes can tightly label recombinant proteases and proteases released from human mast cells. Even under denaturing SDS-PAGE conditions, reversible slow-tight-binding probes can label proteases due to the formation of high-affinity complexes and slow dissociation rates. This unexpected finding will transform the view on the required irreversible nature of activity-based probes. The diversity of this library of activity-based probes combined with a detailed enzyme kinetic characterization will advance their applications in proteomic studies and drug discovery. Frontiers Media S.A. 2023-01-05 /pmc/articles/PMC9849758/ /pubmed/36688031 http://dx.doi.org/10.3389/fchem.2022.1089959 Text en Copyright © 2023 Ramos-Llorca, Decraecker, Cacheux, Zeiburlina, De bruyn, Battut, Moreno-Cinos, Ceradini, Espinosa, Dietrich, Berg, De Meester, Van Der Veken, Boeckxstaens, Lambeir, Denadai-Souza and Augustyns. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Chemistry
Ramos-Llorca, Alba
Decraecker, Lisse
Cacheux, Valérie M. Y.
Zeiburlina, Irena
De bruyn, Michelle
Battut, Louise
Moreno-Cinos, Carlos
Ceradini, Davide
Espinosa, Eric
Dietrich, Gilles
Berg, Maya
De Meester, Ingrid
Van Der Veken, Pieter
Boeckxstaens, Guy
Lambeir, Anne-Marie
Denadai-Souza, Alexandre
Augustyns, Koen
Chemically diverse activity-based probes with unexpected inhibitory mechanisms targeting trypsin-like serine proteases
title Chemically diverse activity-based probes with unexpected inhibitory mechanisms targeting trypsin-like serine proteases
title_full Chemically diverse activity-based probes with unexpected inhibitory mechanisms targeting trypsin-like serine proteases
title_fullStr Chemically diverse activity-based probes with unexpected inhibitory mechanisms targeting trypsin-like serine proteases
title_full_unstemmed Chemically diverse activity-based probes with unexpected inhibitory mechanisms targeting trypsin-like serine proteases
title_short Chemically diverse activity-based probes with unexpected inhibitory mechanisms targeting trypsin-like serine proteases
title_sort chemically diverse activity-based probes with unexpected inhibitory mechanisms targeting trypsin-like serine proteases
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9849758/
https://www.ncbi.nlm.nih.gov/pubmed/36688031
http://dx.doi.org/10.3389/fchem.2022.1089959
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