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Development of a First-in-Class Small-Molecule Inhibitor of the C-Terminal Hsp90 Dimerization

[Image: see text] Heat shock proteins 90 (Hsp90) are promising therapeutic targets due to their involvement in stabilizing several aberrantly expressed oncoproteins. In cancerous cells, Hsp90 expression is elevated, thereby exerting antiapoptotic effects, which is essential for the malignant transfo...

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Autores principales: Bhatia, Sanil, Spanier, Lukas, Bickel, David, Dienstbier, Niklas, Woloschin, Vitalij, Vogt, Melina, Pols, Henrik, Lungerich, Beate, Reiners, Jens, Aghaallaei, Narges, Diedrich, Daniela, Frieg, Benedikt, Schliehe-Diecks, Julian, Bopp, Bertan, Lang, Franziska, Gopalswamy, Mohanraj, Loschwitz, Jennifer, Bajohgli, Baubak, Skokowa, Julia, Borkhardt, Arndt, Hauer, Julia, Hansen, Finn K., Smits, Sander H. J., Jose, Joachim, Gohlke, Holger, Kurz, Thomas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2022
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9136973/
https://www.ncbi.nlm.nih.gov/pubmed/35647282
http://dx.doi.org/10.1021/acscentsci.2c00013
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author Bhatia, Sanil
Spanier, Lukas
Bickel, David
Dienstbier, Niklas
Woloschin, Vitalij
Vogt, Melina
Pols, Henrik
Lungerich, Beate
Reiners, Jens
Aghaallaei, Narges
Diedrich, Daniela
Frieg, Benedikt
Schliehe-Diecks, Julian
Bopp, Bertan
Lang, Franziska
Gopalswamy, Mohanraj
Loschwitz, Jennifer
Bajohgli, Baubak
Skokowa, Julia
Borkhardt, Arndt
Hauer, Julia
Hansen, Finn K.
Smits, Sander H. J.
Jose, Joachim
Gohlke, Holger
Kurz, Thomas
author_facet Bhatia, Sanil
Spanier, Lukas
Bickel, David
Dienstbier, Niklas
Woloschin, Vitalij
Vogt, Melina
Pols, Henrik
Lungerich, Beate
Reiners, Jens
Aghaallaei, Narges
Diedrich, Daniela
Frieg, Benedikt
Schliehe-Diecks, Julian
Bopp, Bertan
Lang, Franziska
Gopalswamy, Mohanraj
Loschwitz, Jennifer
Bajohgli, Baubak
Skokowa, Julia
Borkhardt, Arndt
Hauer, Julia
Hansen, Finn K.
Smits, Sander H. J.
Jose, Joachim
Gohlke, Holger
Kurz, Thomas
author_sort Bhatia, Sanil
collection PubMed
description [Image: see text] Heat shock proteins 90 (Hsp90) are promising therapeutic targets due to their involvement in stabilizing several aberrantly expressed oncoproteins. In cancerous cells, Hsp90 expression is elevated, thereby exerting antiapoptotic effects, which is essential for the malignant transformation and tumor progression. Most of the Hsp90 inhibitors (Hsp90i) under investigation target the ATP binding site in the N-terminal domain of Hsp90. However, adverse effects, including induction of the prosurvival resistance mechanism (heat shock response or HSR) and associated dose-limiting toxicity, have so far precluded their clinical approval. In contrast, modulators that interfere with the C-terminal domain (CTD) of Hsp90 do not inflict HSR. Since the CTD dimerization of Hsp90 is essential for its chaperone activity, interfering with the dimerization process by small-molecule protein–protein interaction inhibitors is a promising strategy for anticancer drug research. We have developed a first-in-class small-molecule inhibitor (5b) targeting the Hsp90 CTD dimerization interface, based on a tripyrimidonamide scaffold through structure-based molecular design, chemical synthesis, binding mode model prediction, assessment of the biochemical affinity, and efficacy against therapy-resistant leukemia cells. 5b reduces xenotransplantation of leukemia cells in zebrafish models and induces apoptosis in BCR-ABL1(+) (T315I) tyrosine kinase inhibitor-resistant leukemia cells, without inducing HSR.
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spelling pubmed-91369732022-05-28 Development of a First-in-Class Small-Molecule Inhibitor of the C-Terminal Hsp90 Dimerization Bhatia, Sanil Spanier, Lukas Bickel, David Dienstbier, Niklas Woloschin, Vitalij Vogt, Melina Pols, Henrik Lungerich, Beate Reiners, Jens Aghaallaei, Narges Diedrich, Daniela Frieg, Benedikt Schliehe-Diecks, Julian Bopp, Bertan Lang, Franziska Gopalswamy, Mohanraj Loschwitz, Jennifer Bajohgli, Baubak Skokowa, Julia Borkhardt, Arndt Hauer, Julia Hansen, Finn K. Smits, Sander H. J. Jose, Joachim Gohlke, Holger Kurz, Thomas ACS Cent Sci [Image: see text] Heat shock proteins 90 (Hsp90) are promising therapeutic targets due to their involvement in stabilizing several aberrantly expressed oncoproteins. In cancerous cells, Hsp90 expression is elevated, thereby exerting antiapoptotic effects, which is essential for the malignant transformation and tumor progression. Most of the Hsp90 inhibitors (Hsp90i) under investigation target the ATP binding site in the N-terminal domain of Hsp90. However, adverse effects, including induction of the prosurvival resistance mechanism (heat shock response or HSR) and associated dose-limiting toxicity, have so far precluded their clinical approval. In contrast, modulators that interfere with the C-terminal domain (CTD) of Hsp90 do not inflict HSR. Since the CTD dimerization of Hsp90 is essential for its chaperone activity, interfering with the dimerization process by small-molecule protein–protein interaction inhibitors is a promising strategy for anticancer drug research. We have developed a first-in-class small-molecule inhibitor (5b) targeting the Hsp90 CTD dimerization interface, based on a tripyrimidonamide scaffold through structure-based molecular design, chemical synthesis, binding mode model prediction, assessment of the biochemical affinity, and efficacy against therapy-resistant leukemia cells. 5b reduces xenotransplantation of leukemia cells in zebrafish models and induces apoptosis in BCR-ABL1(+) (T315I) tyrosine kinase inhibitor-resistant leukemia cells, without inducing HSR. American Chemical Society 2022-04-27 2022-05-25 /pmc/articles/PMC9136973/ /pubmed/35647282 http://dx.doi.org/10.1021/acscentsci.2c00013 Text en © 2022 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Bhatia, Sanil
Spanier, Lukas
Bickel, David
Dienstbier, Niklas
Woloschin, Vitalij
Vogt, Melina
Pols, Henrik
Lungerich, Beate
Reiners, Jens
Aghaallaei, Narges
Diedrich, Daniela
Frieg, Benedikt
Schliehe-Diecks, Julian
Bopp, Bertan
Lang, Franziska
Gopalswamy, Mohanraj
Loschwitz, Jennifer
Bajohgli, Baubak
Skokowa, Julia
Borkhardt, Arndt
Hauer, Julia
Hansen, Finn K.
Smits, Sander H. J.
Jose, Joachim
Gohlke, Holger
Kurz, Thomas
Development of a First-in-Class Small-Molecule Inhibitor of the C-Terminal Hsp90 Dimerization
title Development of a First-in-Class Small-Molecule Inhibitor of the C-Terminal Hsp90 Dimerization
title_full Development of a First-in-Class Small-Molecule Inhibitor of the C-Terminal Hsp90 Dimerization
title_fullStr Development of a First-in-Class Small-Molecule Inhibitor of the C-Terminal Hsp90 Dimerization
title_full_unstemmed Development of a First-in-Class Small-Molecule Inhibitor of the C-Terminal Hsp90 Dimerization
title_short Development of a First-in-Class Small-Molecule Inhibitor of the C-Terminal Hsp90 Dimerization
title_sort development of a first-in-class small-molecule inhibitor of the c-terminal hsp90 dimerization
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9136973/
https://www.ncbi.nlm.nih.gov/pubmed/35647282
http://dx.doi.org/10.1021/acscentsci.2c00013
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