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Cellular Validation of a Chemically Improved Inhibitor Identifies Monoubiquitination on OTUB2

[Image: see text] Ubiquitin thioesterase OTUB2, a cysteine protease from the ovarian tumor (OTU) deubiquitinase superfamily, is often overexpressed during tumor progression and metastasis. Development of OTUB2 inhibitors is therefore believed to be therapeutically important, yet potent and selective...

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Autores principales: Gan, Jin, de Vries, Jelle, Akkermans, Jimmy J. L. L., Mohammed, Yassene, Tjokrodirijo, Rayman T. N., de Ru, Arnoud H., Kim, Robbert Q., Vargas, David A., Pol, Vito, Fasan, Rudi, van Veelen, Peter A., Neefjes, Jacques, van Dam, Hans, Ovaa, Huib, Sapmaz, Aysegul, Geurink, Paul P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10510154/
https://www.ncbi.nlm.nih.gov/pubmed/37642399
http://dx.doi.org/10.1021/acschembio.3c00227
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author Gan, Jin
de Vries, Jelle
Akkermans, Jimmy J. L. L.
Mohammed, Yassene
Tjokrodirijo, Rayman T. N.
de Ru, Arnoud H.
Kim, Robbert Q.
Vargas, David A.
Pol, Vito
Fasan, Rudi
van Veelen, Peter A.
Neefjes, Jacques
van Dam, Hans
Ovaa, Huib
Sapmaz, Aysegul
Geurink, Paul P.
author_facet Gan, Jin
de Vries, Jelle
Akkermans, Jimmy J. L. L.
Mohammed, Yassene
Tjokrodirijo, Rayman T. N.
de Ru, Arnoud H.
Kim, Robbert Q.
Vargas, David A.
Pol, Vito
Fasan, Rudi
van Veelen, Peter A.
Neefjes, Jacques
van Dam, Hans
Ovaa, Huib
Sapmaz, Aysegul
Geurink, Paul P.
author_sort Gan, Jin
collection PubMed
description [Image: see text] Ubiquitin thioesterase OTUB2, a cysteine protease from the ovarian tumor (OTU) deubiquitinase superfamily, is often overexpressed during tumor progression and metastasis. Development of OTUB2 inhibitors is therefore believed to be therapeutically important, yet potent and selective small-molecule inhibitors targeting OTUB2 are scarce. Here, we describe the development of an improved OTUB2 inhibitor, LN5P45, comprising a chloroacethydrazide moiety that covalently reacts to the active-site cysteine residue. LN5P45 shows outstanding target engagement and proteome-wide selectivity in living cells. Importantly, LN5P45 as well as other OTUB2 inhibitors strongly induce monoubiquitination of OTUB2 on lysine 31. We present a route to future OTUB2-related therapeutics and have shown that the OTUB2 inhibitor developed in this study can help to uncover new aspects of the related biology and open new questions regarding the understanding of OTUB2 regulation at the post-translational modification level.
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spelling pubmed-105101542023-09-21 Cellular Validation of a Chemically Improved Inhibitor Identifies Monoubiquitination on OTUB2 Gan, Jin de Vries, Jelle Akkermans, Jimmy J. L. L. Mohammed, Yassene Tjokrodirijo, Rayman T. N. de Ru, Arnoud H. Kim, Robbert Q. Vargas, David A. Pol, Vito Fasan, Rudi van Veelen, Peter A. Neefjes, Jacques van Dam, Hans Ovaa, Huib Sapmaz, Aysegul Geurink, Paul P. ACS Chem Biol [Image: see text] Ubiquitin thioesterase OTUB2, a cysteine protease from the ovarian tumor (OTU) deubiquitinase superfamily, is often overexpressed during tumor progression and metastasis. Development of OTUB2 inhibitors is therefore believed to be therapeutically important, yet potent and selective small-molecule inhibitors targeting OTUB2 are scarce. Here, we describe the development of an improved OTUB2 inhibitor, LN5P45, comprising a chloroacethydrazide moiety that covalently reacts to the active-site cysteine residue. LN5P45 shows outstanding target engagement and proteome-wide selectivity in living cells. Importantly, LN5P45 as well as other OTUB2 inhibitors strongly induce monoubiquitination of OTUB2 on lysine 31. We present a route to future OTUB2-related therapeutics and have shown that the OTUB2 inhibitor developed in this study can help to uncover new aspects of the related biology and open new questions regarding the understanding of OTUB2 regulation at the post-translational modification level. American Chemical Society 2023-08-29 /pmc/articles/PMC10510154/ /pubmed/37642399 http://dx.doi.org/10.1021/acschembio.3c00227 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Gan, Jin
de Vries, Jelle
Akkermans, Jimmy J. L. L.
Mohammed, Yassene
Tjokrodirijo, Rayman T. N.
de Ru, Arnoud H.
Kim, Robbert Q.
Vargas, David A.
Pol, Vito
Fasan, Rudi
van Veelen, Peter A.
Neefjes, Jacques
van Dam, Hans
Ovaa, Huib
Sapmaz, Aysegul
Geurink, Paul P.
Cellular Validation of a Chemically Improved Inhibitor Identifies Monoubiquitination on OTUB2
title Cellular Validation of a Chemically Improved Inhibitor Identifies Monoubiquitination on OTUB2
title_full Cellular Validation of a Chemically Improved Inhibitor Identifies Monoubiquitination on OTUB2
title_fullStr Cellular Validation of a Chemically Improved Inhibitor Identifies Monoubiquitination on OTUB2
title_full_unstemmed Cellular Validation of a Chemically Improved Inhibitor Identifies Monoubiquitination on OTUB2
title_short Cellular Validation of a Chemically Improved Inhibitor Identifies Monoubiquitination on OTUB2
title_sort cellular validation of a chemically improved inhibitor identifies monoubiquitination on otub2
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10510154/
https://www.ncbi.nlm.nih.gov/pubmed/37642399
http://dx.doi.org/10.1021/acschembio.3c00227
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