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A Ubiquitination Cascade Regulating the Integrated Stress Response and Survival in Carcinomas

Systematic identification of signaling pathways required for the fitness of cancer cells will facilitate the development of new cancer therapies. We used gene essentiality measurements in 1,086 cancer cell lines to identify selective coessentiality modules and found that a ubiquitin ligase complex c...

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Autores principales: Cervia, Lisa D., Shibue, Tsukasa, Borah, Ashir A., Gaeta, Benjamin, He, Linh, Leung, Lisa, Li, Naomi, Moyer, Sydney M., Shim, Brian H., Dumont, Nancy, Gonzalez, Alfredo, Bick, Nolan R., Kazachkova, Mariya, Dempster, Joshua M., Krill-Burger, John Michael, Piccioni, Federica, Udeshi, Namrata D., Olive, Meagan E., Carr, Steven A., Root, David E., McFarland, James M., Vazquez, Francisca, Hahn, William C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Association for Cancer Research 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9975667/
https://www.ncbi.nlm.nih.gov/pubmed/36576405
http://dx.doi.org/10.1158/2159-8290.CD-22-1230
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author Cervia, Lisa D.
Shibue, Tsukasa
Borah, Ashir A.
Gaeta, Benjamin
He, Linh
Leung, Lisa
Li, Naomi
Moyer, Sydney M.
Shim, Brian H.
Dumont, Nancy
Gonzalez, Alfredo
Bick, Nolan R.
Kazachkova, Mariya
Dempster, Joshua M.
Krill-Burger, John Michael
Piccioni, Federica
Udeshi, Namrata D.
Olive, Meagan E.
Carr, Steven A.
Root, David E.
McFarland, James M.
Vazquez, Francisca
Hahn, William C.
author_facet Cervia, Lisa D.
Shibue, Tsukasa
Borah, Ashir A.
Gaeta, Benjamin
He, Linh
Leung, Lisa
Li, Naomi
Moyer, Sydney M.
Shim, Brian H.
Dumont, Nancy
Gonzalez, Alfredo
Bick, Nolan R.
Kazachkova, Mariya
Dempster, Joshua M.
Krill-Burger, John Michael
Piccioni, Federica
Udeshi, Namrata D.
Olive, Meagan E.
Carr, Steven A.
Root, David E.
McFarland, James M.
Vazquez, Francisca
Hahn, William C.
author_sort Cervia, Lisa D.
collection PubMed
description Systematic identification of signaling pathways required for the fitness of cancer cells will facilitate the development of new cancer therapies. We used gene essentiality measurements in 1,086 cancer cell lines to identify selective coessentiality modules and found that a ubiquitin ligase complex composed of UBA6, BIRC6, KCMF1, and UBR4 is required for the survival of a subset of epithelial tumors that exhibit a high degree of aneuploidy. Suppressing BIRC6 in cell lines that are dependent on this complex led to a substantial reduction in cell fitness in vitro and potent tumor regression in vivo. Mechanistically, BIRC6 suppression resulted in selective activation of the integrated stress response (ISR) by stabilization of the heme-regulated inhibitor, a direct ubiquitination target of the UBA6/BIRC6/KCMF1/UBR4 complex. These observations uncover a novel ubiquitination cascade that regulates ISR and highlight the potential of ISR activation as a new therapeutic strategy. SIGNIFICANCE: We describe the identification of a heretofore unrecognized ubiquitin ligase complex that prevents the aberrant activation of the ISR in a subset of cancer cells. This provides a novel insight on the regulation of ISR and exposes a therapeutic opportunity to selectively eliminate these cancer cells. See related commentary Leli and Koumenis, p. 535. This article is highlighted in the In This Issue feature, p. 517
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spelling pubmed-99756672023-03-02 A Ubiquitination Cascade Regulating the Integrated Stress Response and Survival in Carcinomas Cervia, Lisa D. Shibue, Tsukasa Borah, Ashir A. Gaeta, Benjamin He, Linh Leung, Lisa Li, Naomi Moyer, Sydney M. Shim, Brian H. Dumont, Nancy Gonzalez, Alfredo Bick, Nolan R. Kazachkova, Mariya Dempster, Joshua M. Krill-Burger, John Michael Piccioni, Federica Udeshi, Namrata D. Olive, Meagan E. Carr, Steven A. Root, David E. McFarland, James M. Vazquez, Francisca Hahn, William C. Cancer Discov Research Articles Systematic identification of signaling pathways required for the fitness of cancer cells will facilitate the development of new cancer therapies. We used gene essentiality measurements in 1,086 cancer cell lines to identify selective coessentiality modules and found that a ubiquitin ligase complex composed of UBA6, BIRC6, KCMF1, and UBR4 is required for the survival of a subset of epithelial tumors that exhibit a high degree of aneuploidy. Suppressing BIRC6 in cell lines that are dependent on this complex led to a substantial reduction in cell fitness in vitro and potent tumor regression in vivo. Mechanistically, BIRC6 suppression resulted in selective activation of the integrated stress response (ISR) by stabilization of the heme-regulated inhibitor, a direct ubiquitination target of the UBA6/BIRC6/KCMF1/UBR4 complex. These observations uncover a novel ubiquitination cascade that regulates ISR and highlight the potential of ISR activation as a new therapeutic strategy. SIGNIFICANCE: We describe the identification of a heretofore unrecognized ubiquitin ligase complex that prevents the aberrant activation of the ISR in a subset of cancer cells. This provides a novel insight on the regulation of ISR and exposes a therapeutic opportunity to selectively eliminate these cancer cells. See related commentary Leli and Koumenis, p. 535. This article is highlighted in the In This Issue feature, p. 517 American Association for Cancer Research 2023-03-01 2022-12-28 /pmc/articles/PMC9975667/ /pubmed/36576405 http://dx.doi.org/10.1158/2159-8290.CD-22-1230 Text en ©2022 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 Research Articles
Cervia, Lisa D.
Shibue, Tsukasa
Borah, Ashir A.
Gaeta, Benjamin
He, Linh
Leung, Lisa
Li, Naomi
Moyer, Sydney M.
Shim, Brian H.
Dumont, Nancy
Gonzalez, Alfredo
Bick, Nolan R.
Kazachkova, Mariya
Dempster, Joshua M.
Krill-Burger, John Michael
Piccioni, Federica
Udeshi, Namrata D.
Olive, Meagan E.
Carr, Steven A.
Root, David E.
McFarland, James M.
Vazquez, Francisca
Hahn, William C.
A Ubiquitination Cascade Regulating the Integrated Stress Response and Survival in Carcinomas
title A Ubiquitination Cascade Regulating the Integrated Stress Response and Survival in Carcinomas
title_full A Ubiquitination Cascade Regulating the Integrated Stress Response and Survival in Carcinomas
title_fullStr A Ubiquitination Cascade Regulating the Integrated Stress Response and Survival in Carcinomas
title_full_unstemmed A Ubiquitination Cascade Regulating the Integrated Stress Response and Survival in Carcinomas
title_short A Ubiquitination Cascade Regulating the Integrated Stress Response and Survival in Carcinomas
title_sort ubiquitination cascade regulating the integrated stress response and survival in carcinomas
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9975667/
https://www.ncbi.nlm.nih.gov/pubmed/36576405
http://dx.doi.org/10.1158/2159-8290.CD-22-1230
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