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Anti-apoptotic MCL1 Protein Represents Critical Survival Molecule for Most Burkitt Lymphomas and BCL2-negative Diffuse Large B-cell Lymphomas

The pro-survival MCL1 protein is overexpressed in many cancers, including B-cell non–Hodgkin lymphomas (B-NHL). S63845 is a highly specific inhibitor of MCL1. We analyzed mechanisms of sensitivity/resistance to S63845 in preclinical models of diffuse large B-cell lymphoma (DLBCL) and Burkitt lymphom...

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Autores principales: Klanova, Magdalena, Kazantsev, Dmitry, Pokorna, Eva, Zikmund, Tomas, Karolova, Jana, Behounek, Matej, Renesova, Nicol, Sovilj, Dana, Kelemen, Cristina D., Helman, Karel, Jaksa, Radek, Havranek, Ondrej, Andera, Ladislav, Trneny, Marek, Klener, Pavel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Association for Cancer Research 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9398137/
https://www.ncbi.nlm.nih.gov/pubmed/34728569
http://dx.doi.org/10.1158/1535-7163.MCT-21-0511
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author Klanova, Magdalena
Kazantsev, Dmitry
Pokorna, Eva
Zikmund, Tomas
Karolova, Jana
Behounek, Matej
Renesova, Nicol
Sovilj, Dana
Kelemen, Cristina D.
Helman, Karel
Jaksa, Radek
Havranek, Ondrej
Andera, Ladislav
Trneny, Marek
Klener, Pavel
author_facet Klanova, Magdalena
Kazantsev, Dmitry
Pokorna, Eva
Zikmund, Tomas
Karolova, Jana
Behounek, Matej
Renesova, Nicol
Sovilj, Dana
Kelemen, Cristina D.
Helman, Karel
Jaksa, Radek
Havranek, Ondrej
Andera, Ladislav
Trneny, Marek
Klener, Pavel
author_sort Klanova, Magdalena
collection PubMed
description The pro-survival MCL1 protein is overexpressed in many cancers, including B-cell non–Hodgkin lymphomas (B-NHL). S63845 is a highly specific inhibitor of MCL1. We analyzed mechanisms of sensitivity/resistance to S63845 in preclinical models of diffuse large B-cell lymphoma (DLBCL) and Burkitt lymphoma. Annexin V-based cytotoxic assays, Western blot analysis, protein co-immunoprecipitation, and cell clones with manipulated expression of BCL2 family proteins were used to analyze mechanisms of sensitivity to S63845. Experimental in vivo therapy with S63845 and/or venetoclax was performed using patient-derived xenografts (PDX) of treatment-refractory B-NHL. A subset of DLBCL and majority of Burkitt lymphoma cell lines were sensitive to S63845. The level of BCL2 protein expression was the major determinant of resistance to S63845: BCL2 serves as a buffer for pro-apoptotic proteins released from MCL1 upon exposure to S63845. While BCL2-negative lymphomas were effectively eliminated by single-agent S63845, its combination with venetoclax was synthetically lethal in BCL2-positive PDX models. Concerning MCL1, both, the level of MCL1 protein expression, and its occupational status represent key factors mediating sensitivity to S63845. In contrast to MCL1-BIM/BAK1 complexes that prime lymphoma cells for S63845-mediated apoptosis, MCL1-NOXA complexes are associated with S63845 resistance. In conclusion, MCL1 represents a critical survival molecule for most Burkitt lymphomas and a subset of BCL2-negative DLBCLs. The level of BCL2 and MCL1 expression and occupational status of MCL1 belong to the key modulators of sensitivity/resistance to S63845. Co-treatment with venetoclax can overcome BCL2-mediated resistance to S63845, and enhance efficacy of MCL1 inhibitors in BCL2-positive aggressive B-NHL.
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spelling pubmed-93981372023-01-05 Anti-apoptotic MCL1 Protein Represents Critical Survival Molecule for Most Burkitt Lymphomas and BCL2-negative Diffuse Large B-cell Lymphomas Klanova, Magdalena Kazantsev, Dmitry Pokorna, Eva Zikmund, Tomas Karolova, Jana Behounek, Matej Renesova, Nicol Sovilj, Dana Kelemen, Cristina D. Helman, Karel Jaksa, Radek Havranek, Ondrej Andera, Ladislav Trneny, Marek Klener, Pavel Mol Cancer Ther Small Molecule Therapeutics The pro-survival MCL1 protein is overexpressed in many cancers, including B-cell non–Hodgkin lymphomas (B-NHL). S63845 is a highly specific inhibitor of MCL1. We analyzed mechanisms of sensitivity/resistance to S63845 in preclinical models of diffuse large B-cell lymphoma (DLBCL) and Burkitt lymphoma. Annexin V-based cytotoxic assays, Western blot analysis, protein co-immunoprecipitation, and cell clones with manipulated expression of BCL2 family proteins were used to analyze mechanisms of sensitivity to S63845. Experimental in vivo therapy with S63845 and/or venetoclax was performed using patient-derived xenografts (PDX) of treatment-refractory B-NHL. A subset of DLBCL and majority of Burkitt lymphoma cell lines were sensitive to S63845. The level of BCL2 protein expression was the major determinant of resistance to S63845: BCL2 serves as a buffer for pro-apoptotic proteins released from MCL1 upon exposure to S63845. While BCL2-negative lymphomas were effectively eliminated by single-agent S63845, its combination with venetoclax was synthetically lethal in BCL2-positive PDX models. Concerning MCL1, both, the level of MCL1 protein expression, and its occupational status represent key factors mediating sensitivity to S63845. In contrast to MCL1-BIM/BAK1 complexes that prime lymphoma cells for S63845-mediated apoptosis, MCL1-NOXA complexes are associated with S63845 resistance. In conclusion, MCL1 represents a critical survival molecule for most Burkitt lymphomas and a subset of BCL2-negative DLBCLs. The level of BCL2 and MCL1 expression and occupational status of MCL1 belong to the key modulators of sensitivity/resistance to S63845. Co-treatment with venetoclax can overcome BCL2-mediated resistance to S63845, and enhance efficacy of MCL1 inhibitors in BCL2-positive aggressive B-NHL. American Association for Cancer Research 2022-01-01 2021-11-02 /pmc/articles/PMC9398137/ /pubmed/34728569 http://dx.doi.org/10.1158/1535-7163.MCT-21-0511 Text en ©2021 The Authors; Published by the American Association for Cancer Research https://creativecommons.org/licenses/by-nc-nd/4.0/This open access article is distributed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International (CC BY-NC-ND 4.0) license.
spellingShingle Small Molecule Therapeutics
Klanova, Magdalena
Kazantsev, Dmitry
Pokorna, Eva
Zikmund, Tomas
Karolova, Jana
Behounek, Matej
Renesova, Nicol
Sovilj, Dana
Kelemen, Cristina D.
Helman, Karel
Jaksa, Radek
Havranek, Ondrej
Andera, Ladislav
Trneny, Marek
Klener, Pavel
Anti-apoptotic MCL1 Protein Represents Critical Survival Molecule for Most Burkitt Lymphomas and BCL2-negative Diffuse Large B-cell Lymphomas
title Anti-apoptotic MCL1 Protein Represents Critical Survival Molecule for Most Burkitt Lymphomas and BCL2-negative Diffuse Large B-cell Lymphomas
title_full Anti-apoptotic MCL1 Protein Represents Critical Survival Molecule for Most Burkitt Lymphomas and BCL2-negative Diffuse Large B-cell Lymphomas
title_fullStr Anti-apoptotic MCL1 Protein Represents Critical Survival Molecule for Most Burkitt Lymphomas and BCL2-negative Diffuse Large B-cell Lymphomas
title_full_unstemmed Anti-apoptotic MCL1 Protein Represents Critical Survival Molecule for Most Burkitt Lymphomas and BCL2-negative Diffuse Large B-cell Lymphomas
title_short Anti-apoptotic MCL1 Protein Represents Critical Survival Molecule for Most Burkitt Lymphomas and BCL2-negative Diffuse Large B-cell Lymphomas
title_sort anti-apoptotic mcl1 protein represents critical survival molecule for most burkitt lymphomas and bcl2-negative diffuse large b-cell lymphomas
topic Small Molecule Therapeutics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9398137/
https://www.ncbi.nlm.nih.gov/pubmed/34728569
http://dx.doi.org/10.1158/1535-7163.MCT-21-0511
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