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An allosteric pan-TEAD inhibitor blocks oncogenic YAP/TAZ signaling and overcomes KRAS G12C inhibitor resistance

The Hippo pathway is a key growth control pathway that is conserved across species. The downstream effectors of the Hippo pathway, YAP (Yes-associated protein) and TAZ (transcriptional coactivator with PDZ-binding motif), are frequently activated in cancers to drive proliferation and survival. Based...

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Autores principales: Hagenbeek, Thijs J., Zbieg, Jason R., Hafner, Marc, Mroue, Rana, Lacap, Jennifer A., Sodir, Nicole M., Noland, Cameron L., Afghani, Shervin, Kishore, Ayush, Bhat, Kamakoti P., Yao, Xiaosai, Schmidt, Stephen, Clausen, Saundra, Steffek, Micah, Lee, Wendy, Beroza, Paul, Martin, Scott, Lin, Eva, Fong, Rina, Di Lello, Paola, Kubala, Marta H., Yang, Michelle N.-Y., Lau, Jeffrey T., Chan, Emily, Arrazate, Alfonso, An, Le, Levy, Elizabeth, Lorenzo, Maria N., Lee, Ho-June, Pham, Trang H., Modrusan, Zora, Zang, Richard, Chen, Yi-Chen, Kabza, Michal, Ahmed, Musaddeque, Li, Jason, Chang, Matthew T., Maddalo, Danilo, Evangelista, Marie, Ye, Xin, Crawford, James J., Dey, Anwesha
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group US 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10293011/
https://www.ncbi.nlm.nih.gov/pubmed/37277530
http://dx.doi.org/10.1038/s43018-023-00577-0
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author Hagenbeek, Thijs J.
Zbieg, Jason R.
Hafner, Marc
Mroue, Rana
Lacap, Jennifer A.
Sodir, Nicole M.
Noland, Cameron L.
Afghani, Shervin
Kishore, Ayush
Bhat, Kamakoti P.
Yao, Xiaosai
Schmidt, Stephen
Clausen, Saundra
Steffek, Micah
Lee, Wendy
Beroza, Paul
Martin, Scott
Lin, Eva
Fong, Rina
Di Lello, Paola
Kubala, Marta H.
Yang, Michelle N.-Y.
Lau, Jeffrey T.
Chan, Emily
Arrazate, Alfonso
An, Le
Levy, Elizabeth
Lorenzo, Maria N.
Lee, Ho-June
Pham, Trang H.
Modrusan, Zora
Zang, Richard
Chen, Yi-Chen
Kabza, Michal
Ahmed, Musaddeque
Li, Jason
Chang, Matthew T.
Maddalo, Danilo
Evangelista, Marie
Ye, Xin
Crawford, James J.
Dey, Anwesha
author_facet Hagenbeek, Thijs J.
Zbieg, Jason R.
Hafner, Marc
Mroue, Rana
Lacap, Jennifer A.
Sodir, Nicole M.
Noland, Cameron L.
Afghani, Shervin
Kishore, Ayush
Bhat, Kamakoti P.
Yao, Xiaosai
Schmidt, Stephen
Clausen, Saundra
Steffek, Micah
Lee, Wendy
Beroza, Paul
Martin, Scott
Lin, Eva
Fong, Rina
Di Lello, Paola
Kubala, Marta H.
Yang, Michelle N.-Y.
Lau, Jeffrey T.
Chan, Emily
Arrazate, Alfonso
An, Le
Levy, Elizabeth
Lorenzo, Maria N.
Lee, Ho-June
Pham, Trang H.
Modrusan, Zora
Zang, Richard
Chen, Yi-Chen
Kabza, Michal
Ahmed, Musaddeque
Li, Jason
Chang, Matthew T.
Maddalo, Danilo
Evangelista, Marie
Ye, Xin
Crawford, James J.
Dey, Anwesha
author_sort Hagenbeek, Thijs J.
collection PubMed
description The Hippo pathway is a key growth control pathway that is conserved across species. The downstream effectors of the Hippo pathway, YAP (Yes-associated protein) and TAZ (transcriptional coactivator with PDZ-binding motif), are frequently activated in cancers to drive proliferation and survival. Based on the premise that sustained interactions between YAP/TAZ and TEADs (transcriptional enhanced associate domain) are central to their transcriptional activities, we discovered a potent small-molecule inhibitor (SMI), GNE-7883, that allosterically blocks the interactions between YAP/TAZ and all human TEAD paralogs through binding to the TEAD lipid pocket. GNE-7883 effectively reduces chromatin accessibility specifically at TEAD motifs, suppresses cell proliferation in a variety of cell line models and achieves strong antitumor efficacy in vivo. Furthermore, we uncovered that GNE-7883 effectively overcomes both intrinsic and acquired resistance to KRAS (Kirsten rat sarcoma viral oncogene homolog) G12C inhibitors in diverse preclinical models through the inhibition of YAP/TAZ activation. Taken together, this work demonstrates the activities of TEAD SMIs in YAP/TAZ-dependent cancers and highlights their potential broad applications in precision oncology and therapy resistance.
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spelling pubmed-102930112023-06-28 An allosteric pan-TEAD inhibitor blocks oncogenic YAP/TAZ signaling and overcomes KRAS G12C inhibitor resistance Hagenbeek, Thijs J. Zbieg, Jason R. Hafner, Marc Mroue, Rana Lacap, Jennifer A. Sodir, Nicole M. Noland, Cameron L. Afghani, Shervin Kishore, Ayush Bhat, Kamakoti P. Yao, Xiaosai Schmidt, Stephen Clausen, Saundra Steffek, Micah Lee, Wendy Beroza, Paul Martin, Scott Lin, Eva Fong, Rina Di Lello, Paola Kubala, Marta H. Yang, Michelle N.-Y. Lau, Jeffrey T. Chan, Emily Arrazate, Alfonso An, Le Levy, Elizabeth Lorenzo, Maria N. Lee, Ho-June Pham, Trang H. Modrusan, Zora Zang, Richard Chen, Yi-Chen Kabza, Michal Ahmed, Musaddeque Li, Jason Chang, Matthew T. Maddalo, Danilo Evangelista, Marie Ye, Xin Crawford, James J. Dey, Anwesha Nat Cancer Article The Hippo pathway is a key growth control pathway that is conserved across species. The downstream effectors of the Hippo pathway, YAP (Yes-associated protein) and TAZ (transcriptional coactivator with PDZ-binding motif), are frequently activated in cancers to drive proliferation and survival. Based on the premise that sustained interactions between YAP/TAZ and TEADs (transcriptional enhanced associate domain) are central to their transcriptional activities, we discovered a potent small-molecule inhibitor (SMI), GNE-7883, that allosterically blocks the interactions between YAP/TAZ and all human TEAD paralogs through binding to the TEAD lipid pocket. GNE-7883 effectively reduces chromatin accessibility specifically at TEAD motifs, suppresses cell proliferation in a variety of cell line models and achieves strong antitumor efficacy in vivo. Furthermore, we uncovered that GNE-7883 effectively overcomes both intrinsic and acquired resistance to KRAS (Kirsten rat sarcoma viral oncogene homolog) G12C inhibitors in diverse preclinical models through the inhibition of YAP/TAZ activation. Taken together, this work demonstrates the activities of TEAD SMIs in YAP/TAZ-dependent cancers and highlights their potential broad applications in precision oncology and therapy resistance. Nature Publishing Group US 2023-06-05 2023 /pmc/articles/PMC10293011/ /pubmed/37277530 http://dx.doi.org/10.1038/s43018-023-00577-0 Text en © The Author(s) 2023 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Hagenbeek, Thijs J.
Zbieg, Jason R.
Hafner, Marc
Mroue, Rana
Lacap, Jennifer A.
Sodir, Nicole M.
Noland, Cameron L.
Afghani, Shervin
Kishore, Ayush
Bhat, Kamakoti P.
Yao, Xiaosai
Schmidt, Stephen
Clausen, Saundra
Steffek, Micah
Lee, Wendy
Beroza, Paul
Martin, Scott
Lin, Eva
Fong, Rina
Di Lello, Paola
Kubala, Marta H.
Yang, Michelle N.-Y.
Lau, Jeffrey T.
Chan, Emily
Arrazate, Alfonso
An, Le
Levy, Elizabeth
Lorenzo, Maria N.
Lee, Ho-June
Pham, Trang H.
Modrusan, Zora
Zang, Richard
Chen, Yi-Chen
Kabza, Michal
Ahmed, Musaddeque
Li, Jason
Chang, Matthew T.
Maddalo, Danilo
Evangelista, Marie
Ye, Xin
Crawford, James J.
Dey, Anwesha
An allosteric pan-TEAD inhibitor blocks oncogenic YAP/TAZ signaling and overcomes KRAS G12C inhibitor resistance
title An allosteric pan-TEAD inhibitor blocks oncogenic YAP/TAZ signaling and overcomes KRAS G12C inhibitor resistance
title_full An allosteric pan-TEAD inhibitor blocks oncogenic YAP/TAZ signaling and overcomes KRAS G12C inhibitor resistance
title_fullStr An allosteric pan-TEAD inhibitor blocks oncogenic YAP/TAZ signaling and overcomes KRAS G12C inhibitor resistance
title_full_unstemmed An allosteric pan-TEAD inhibitor blocks oncogenic YAP/TAZ signaling and overcomes KRAS G12C inhibitor resistance
title_short An allosteric pan-TEAD inhibitor blocks oncogenic YAP/TAZ signaling and overcomes KRAS G12C inhibitor resistance
title_sort allosteric pan-tead inhibitor blocks oncogenic yap/taz signaling and overcomes kras g12c inhibitor resistance
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10293011/
https://www.ncbi.nlm.nih.gov/pubmed/37277530
http://dx.doi.org/10.1038/s43018-023-00577-0
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