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MYCMI-7: A Small MYC-Binding Compound that Inhibits MYC: MAX Interaction and Tumor Growth in a MYC-Dependent Manner

Deregulated expression of MYC family oncogenes occurs frequently in human cancer and is often associated with aggressive disease and poor prognosis. While MYC is a highly warranted target, it has been considered “undruggable,” and no specific anti-MYC drugs are available in the clinic. We recently i...

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Autores principales: Castell, Alina, Yan, Qinzi, Fawkner, Karin, Bazzar, Wesam, Zhang, Fan, Wickström, Malin, Alzrigat, Mohammad, Franco, Marcela, Krona, Cecilia, Cameron, Donald P., Dyberg, Cecilia, Olsen, Thale Kristin, Verschut, Vasiliki, Schmidt, Linnéa, Lim, Sheryl Y., Mahmoud, Loay, Hydbring, Per, Lehmann, Sören, Baranello, Laura, Nelander, Sven, Johnsen, John Inge, Larsson, Lars-Gunnar
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/PMC9980915/
https://www.ncbi.nlm.nih.gov/pubmed/36874405
http://dx.doi.org/10.1158/2767-9764.CRC-21-0019
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author Castell, Alina
Yan, Qinzi
Fawkner, Karin
Bazzar, Wesam
Zhang, Fan
Wickström, Malin
Alzrigat, Mohammad
Franco, Marcela
Krona, Cecilia
Cameron, Donald P.
Dyberg, Cecilia
Olsen, Thale Kristin
Verschut, Vasiliki
Schmidt, Linnéa
Lim, Sheryl Y.
Mahmoud, Loay
Hydbring, Per
Lehmann, Sören
Baranello, Laura
Nelander, Sven
Johnsen, John Inge
Larsson, Lars-Gunnar
author_facet Castell, Alina
Yan, Qinzi
Fawkner, Karin
Bazzar, Wesam
Zhang, Fan
Wickström, Malin
Alzrigat, Mohammad
Franco, Marcela
Krona, Cecilia
Cameron, Donald P.
Dyberg, Cecilia
Olsen, Thale Kristin
Verschut, Vasiliki
Schmidt, Linnéa
Lim, Sheryl Y.
Mahmoud, Loay
Hydbring, Per
Lehmann, Sören
Baranello, Laura
Nelander, Sven
Johnsen, John Inge
Larsson, Lars-Gunnar
author_sort Castell, Alina
collection PubMed
description Deregulated expression of MYC family oncogenes occurs frequently in human cancer and is often associated with aggressive disease and poor prognosis. While MYC is a highly warranted target, it has been considered “undruggable,” and no specific anti-MYC drugs are available in the clinic. We recently identified molecules named MYCMIs that inhibit the interaction between MYC and its essential partner MAX. Here we show that one of these molecules, MYCMI-7, efficiently and selectively inhibits MYC:MAX and MYCN:MAX interactions in cells, binds directly to recombinant MYC, and reduces MYC-driven transcription. In addition, MYCMI-7 induces degradation of MYC and MYCN proteins. MYCMI-7 potently induces growth arrest/apoptosis in tumor cells in a MYC/MYCN-dependent manner and downregulates the MYC pathway on a global level as determined by RNA sequencing. Sensitivity to MYCMI-7 correlates with MYC expression in a panel of 60 tumor cell lines and MYCMI-7 shows high efficacy toward a collection of patient-derived primary glioblastoma and acute myeloid leukemia (AML) ex vivo cultures. Importantly, a variety of normal cells become G(1) arrested without signs of apoptosis upon MYCMI-7 treatment. Finally, in mouse tumor models of MYC-driven AML, breast cancer, and MYCN-amplified neuroblastoma, treatment with MYCMI-7 downregulates MYC/MYCN, inhibits tumor growth, and prolongs survival through apoptosis with few side effects. In conclusion, MYCMI-7 is a potent and selective MYC inhibitor that is highly relevant for the development into clinically useful drugs for the treatment of MYC-driven cancer. SIGNIFICANCE: Our findings demonstrate that the small-molecule MYCMI-7 binds MYC and inhibits interaction between MYC and MAX, thereby hampering MYC-driven tumor cell growth in culture and in vivo while sparing normal cells.
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spelling pubmed-99809152023-03-03 MYCMI-7: A Small MYC-Binding Compound that Inhibits MYC: MAX Interaction and Tumor Growth in a MYC-Dependent Manner Castell, Alina Yan, Qinzi Fawkner, Karin Bazzar, Wesam Zhang, Fan Wickström, Malin Alzrigat, Mohammad Franco, Marcela Krona, Cecilia Cameron, Donald P. Dyberg, Cecilia Olsen, Thale Kristin Verschut, Vasiliki Schmidt, Linnéa Lim, Sheryl Y. Mahmoud, Loay Hydbring, Per Lehmann, Sören Baranello, Laura Nelander, Sven Johnsen, John Inge Larsson, Lars-Gunnar Cancer Res Commun Research Article Deregulated expression of MYC family oncogenes occurs frequently in human cancer and is often associated with aggressive disease and poor prognosis. While MYC is a highly warranted target, it has been considered “undruggable,” and no specific anti-MYC drugs are available in the clinic. We recently identified molecules named MYCMIs that inhibit the interaction between MYC and its essential partner MAX. Here we show that one of these molecules, MYCMI-7, efficiently and selectively inhibits MYC:MAX and MYCN:MAX interactions in cells, binds directly to recombinant MYC, and reduces MYC-driven transcription. In addition, MYCMI-7 induces degradation of MYC and MYCN proteins. MYCMI-7 potently induces growth arrest/apoptosis in tumor cells in a MYC/MYCN-dependent manner and downregulates the MYC pathway on a global level as determined by RNA sequencing. Sensitivity to MYCMI-7 correlates with MYC expression in a panel of 60 tumor cell lines and MYCMI-7 shows high efficacy toward a collection of patient-derived primary glioblastoma and acute myeloid leukemia (AML) ex vivo cultures. Importantly, a variety of normal cells become G(1) arrested without signs of apoptosis upon MYCMI-7 treatment. Finally, in mouse tumor models of MYC-driven AML, breast cancer, and MYCN-amplified neuroblastoma, treatment with MYCMI-7 downregulates MYC/MYCN, inhibits tumor growth, and prolongs survival through apoptosis with few side effects. In conclusion, MYCMI-7 is a potent and selective MYC inhibitor that is highly relevant for the development into clinically useful drugs for the treatment of MYC-driven cancer. SIGNIFICANCE: Our findings demonstrate that the small-molecule MYCMI-7 binds MYC and inhibits interaction between MYC and MAX, thereby hampering MYC-driven tumor cell growth in culture and in vivo while sparing normal cells. American Association for Cancer Research 2022-03-31 /pmc/articles/PMC9980915/ /pubmed/36874405 http://dx.doi.org/10.1158/2767-9764.CRC-21-0019 Text en © 2022 The Authors; Published by the American Association for Cancer Research https://creativecommons.org/licenses/by/4.0/This open access article is distributed under the Creative Commons Attribution 4.0 International (CC BY 4.0) license.
spellingShingle Research Article
Castell, Alina
Yan, Qinzi
Fawkner, Karin
Bazzar, Wesam
Zhang, Fan
Wickström, Malin
Alzrigat, Mohammad
Franco, Marcela
Krona, Cecilia
Cameron, Donald P.
Dyberg, Cecilia
Olsen, Thale Kristin
Verschut, Vasiliki
Schmidt, Linnéa
Lim, Sheryl Y.
Mahmoud, Loay
Hydbring, Per
Lehmann, Sören
Baranello, Laura
Nelander, Sven
Johnsen, John Inge
Larsson, Lars-Gunnar
MYCMI-7: A Small MYC-Binding Compound that Inhibits MYC: MAX Interaction and Tumor Growth in a MYC-Dependent Manner
title MYCMI-7: A Small MYC-Binding Compound that Inhibits MYC: MAX Interaction and Tumor Growth in a MYC-Dependent Manner
title_full MYCMI-7: A Small MYC-Binding Compound that Inhibits MYC: MAX Interaction and Tumor Growth in a MYC-Dependent Manner
title_fullStr MYCMI-7: A Small MYC-Binding Compound that Inhibits MYC: MAX Interaction and Tumor Growth in a MYC-Dependent Manner
title_full_unstemmed MYCMI-7: A Small MYC-Binding Compound that Inhibits MYC: MAX Interaction and Tumor Growth in a MYC-Dependent Manner
title_short MYCMI-7: A Small MYC-Binding Compound that Inhibits MYC: MAX Interaction and Tumor Growth in a MYC-Dependent Manner
title_sort mycmi-7: a small myc-binding compound that inhibits myc: max interaction and tumor growth in a myc-dependent manner
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9980915/
https://www.ncbi.nlm.nih.gov/pubmed/36874405
http://dx.doi.org/10.1158/2767-9764.CRC-21-0019
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