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Structure‐Based Design, Synthesis, and Biological Evaluation of Triazole‐Based smHDAC8 Inhibitors

Schistosomiasis is a neglected tropical disease caused by parasitic flatworms of the genus Schistosoma, which affects over 200 million people worldwide and leads to at least 300,000 deaths every year. In this study, initial screening revealed the triazole‐based hydroxamate 2 b (N‐hydroxy‐1‐phenyl‐1H...

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Autores principales: Kalinin, Dmitrii V., Jana, Sunit K., Pfafenrot, Maxim, Chakrabarti, Alokta, Melesina, Jelena, Shaik, Tajith B., Lancelot, Julien, Pierce, Raymond J., Sippl, Wolfgang, Romier, Christophe, Jung, Manfred, Holl, Ralph
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7187165/
https://www.ncbi.nlm.nih.gov/pubmed/31816172
http://dx.doi.org/10.1002/cmdc.201900583
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author Kalinin, Dmitrii V.
Jana, Sunit K.
Pfafenrot, Maxim
Chakrabarti, Alokta
Melesina, Jelena
Shaik, Tajith B.
Lancelot, Julien
Pierce, Raymond J.
Sippl, Wolfgang
Romier, Christophe
Jung, Manfred
Holl, Ralph
author_facet Kalinin, Dmitrii V.
Jana, Sunit K.
Pfafenrot, Maxim
Chakrabarti, Alokta
Melesina, Jelena
Shaik, Tajith B.
Lancelot, Julien
Pierce, Raymond J.
Sippl, Wolfgang
Romier, Christophe
Jung, Manfred
Holl, Ralph
author_sort Kalinin, Dmitrii V.
collection PubMed
description Schistosomiasis is a neglected tropical disease caused by parasitic flatworms of the genus Schistosoma, which affects over 200 million people worldwide and leads to at least 300,000 deaths every year. In this study, initial screening revealed the triazole‐based hydroxamate 2 b (N‐hydroxy‐1‐phenyl‐1H‐1,2,3‐triazole‐4‐carboxamide) exhibiting potent inhibitory activity toward the novel antiparasitic target Schistosoma mansoni histone deacetylase 8 (smHDAC8) and promising selectivity over the major human HDACs. Subsequent crystallographic studies of the 2 b/smHDAC8 complex revealed key interactions between the inhibitor and the enzyme's active site, thus explaining the unique selectivity profile of the inhibitor. Further chemical modifications of 2 b led to the discovery of 4‐fluorophenoxy derivative 21 (1‐[5‐chloro‐2‐(4‐fluorophenoxy)phenyl]‐N‐hydroxy‐1H‐1,2,3‐triazole‐4‐carboxamide), a nanomolar smHDAC8 inhibitor (IC(50)=0.5 μM), exceeding the smHDAC8 inhibitory activity of 2 b and SAHA (vorinostat), while exhibiting an improved selectivity profile over the investigated human HDACs. Collectively, this study reveals specific interactions between smHDAC8 and the synthesized triazole‐based inhibitors and demonstrates that these small molecules represent promising lead structures, which could be further developed in the search for novel drugs for the treatment of schistosomiasis.
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spelling pubmed-71871652020-04-28 Structure‐Based Design, Synthesis, and Biological Evaluation of Triazole‐Based smHDAC8 Inhibitors Kalinin, Dmitrii V. Jana, Sunit K. Pfafenrot, Maxim Chakrabarti, Alokta Melesina, Jelena Shaik, Tajith B. Lancelot, Julien Pierce, Raymond J. Sippl, Wolfgang Romier, Christophe Jung, Manfred Holl, Ralph ChemMedChem Full Papers Schistosomiasis is a neglected tropical disease caused by parasitic flatworms of the genus Schistosoma, which affects over 200 million people worldwide and leads to at least 300,000 deaths every year. In this study, initial screening revealed the triazole‐based hydroxamate 2 b (N‐hydroxy‐1‐phenyl‐1H‐1,2,3‐triazole‐4‐carboxamide) exhibiting potent inhibitory activity toward the novel antiparasitic target Schistosoma mansoni histone deacetylase 8 (smHDAC8) and promising selectivity over the major human HDACs. Subsequent crystallographic studies of the 2 b/smHDAC8 complex revealed key interactions between the inhibitor and the enzyme's active site, thus explaining the unique selectivity profile of the inhibitor. Further chemical modifications of 2 b led to the discovery of 4‐fluorophenoxy derivative 21 (1‐[5‐chloro‐2‐(4‐fluorophenoxy)phenyl]‐N‐hydroxy‐1H‐1,2,3‐triazole‐4‐carboxamide), a nanomolar smHDAC8 inhibitor (IC(50)=0.5 μM), exceeding the smHDAC8 inhibitory activity of 2 b and SAHA (vorinostat), while exhibiting an improved selectivity profile over the investigated human HDACs. Collectively, this study reveals specific interactions between smHDAC8 and the synthesized triazole‐based inhibitors and demonstrates that these small molecules represent promising lead structures, which could be further developed in the search for novel drugs for the treatment of schistosomiasis. John Wiley and Sons Inc. 2020-01-09 2020-04-03 /pmc/articles/PMC7187165/ /pubmed/31816172 http://dx.doi.org/10.1002/cmdc.201900583 Text en © 2019 The Authors. Published by Wiley-VCH Verlag GmbH & Co. KGaA. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Full Papers
Kalinin, Dmitrii V.
Jana, Sunit K.
Pfafenrot, Maxim
Chakrabarti, Alokta
Melesina, Jelena
Shaik, Tajith B.
Lancelot, Julien
Pierce, Raymond J.
Sippl, Wolfgang
Romier, Christophe
Jung, Manfred
Holl, Ralph
Structure‐Based Design, Synthesis, and Biological Evaluation of Triazole‐Based smHDAC8 Inhibitors
title Structure‐Based Design, Synthesis, and Biological Evaluation of Triazole‐Based smHDAC8 Inhibitors
title_full Structure‐Based Design, Synthesis, and Biological Evaluation of Triazole‐Based smHDAC8 Inhibitors
title_fullStr Structure‐Based Design, Synthesis, and Biological Evaluation of Triazole‐Based smHDAC8 Inhibitors
title_full_unstemmed Structure‐Based Design, Synthesis, and Biological Evaluation of Triazole‐Based smHDAC8 Inhibitors
title_short Structure‐Based Design, Synthesis, and Biological Evaluation of Triazole‐Based smHDAC8 Inhibitors
title_sort structure‐based design, synthesis, and biological evaluation of triazole‐based smhdac8 inhibitors
topic Full Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7187165/
https://www.ncbi.nlm.nih.gov/pubmed/31816172
http://dx.doi.org/10.1002/cmdc.201900583
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