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A new function for the serine protease HtrA2 in controlling radiation‐induced senescence in cancer cells

Radiation therapy can induce cellular senescence in cancer cells, leading to short‐term tumor growth arrest but increased long‐term recurrence. To better understand the molecular mechanisms involved, we developed a model of radiation‐induced senescence in cultured cancer cells. The irradiated cells...

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Autores principales: Hammer, Liat, Levin‐Salomon, Vered, Yaeli‐Slonim, Naama, Weiss, Moria, Dekel‐Bird, Naama P., Olender, Tsviya, Porat, Ziv, Winograd‐Katz, Sabina, Savidor, Alon, Levin, Yishai, Bialik, Shani, Geiger, Benjamin, Kimchi, Adi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8936513/
https://www.ncbi.nlm.nih.gov/pubmed/35122388
http://dx.doi.org/10.1002/1878-0261.13187
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author Hammer, Liat
Levin‐Salomon, Vered
Yaeli‐Slonim, Naama
Weiss, Moria
Dekel‐Bird, Naama P.
Olender, Tsviya
Porat, Ziv
Winograd‐Katz, Sabina
Savidor, Alon
Levin, Yishai
Bialik, Shani
Geiger, Benjamin
Kimchi, Adi
author_facet Hammer, Liat
Levin‐Salomon, Vered
Yaeli‐Slonim, Naama
Weiss, Moria
Dekel‐Bird, Naama P.
Olender, Tsviya
Porat, Ziv
Winograd‐Katz, Sabina
Savidor, Alon
Levin, Yishai
Bialik, Shani
Geiger, Benjamin
Kimchi, Adi
author_sort Hammer, Liat
collection PubMed
description Radiation therapy can induce cellular senescence in cancer cells, leading to short‐term tumor growth arrest but increased long‐term recurrence. To better understand the molecular mechanisms involved, we developed a model of radiation‐induced senescence in cultured cancer cells. The irradiated cells exhibited a typical senescent phenotype, including upregulation of p53 and its main target, p21, followed by a sustained reduction in cellular proliferation, changes in cell size and cytoskeleton organization, and senescence‐associated beta‐galactosidase activity. Mass spectrometry‐based proteomic profiling of the senescent cells indicated downregulation of proteins involved in cell cycle progression and DNA repair, and upregulation of proteins associated with malignancy. A functional siRNA screen using a cell death‐related library identified mitochondrial serine protease HtrA2 as being necessary for sustained growth arrest of the senescent cells. In search of direct HtrA2 substrates following radiation, we determined that HtrA2 cleaves the intermediate filament protein vimentin, affecting its cytoplasmic organization. Ectopic expression of active cytosolic HtrA2 resulted in similar changes to vimentin filament assembly. Thus, HtrA2 is involved in the cytoskeletal reorganization that accompanies radiation‐induced senescence and the continuous maintenance of proliferation arrest.
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spelling pubmed-89365132022-03-29 A new function for the serine protease HtrA2 in controlling radiation‐induced senescence in cancer cells Hammer, Liat Levin‐Salomon, Vered Yaeli‐Slonim, Naama Weiss, Moria Dekel‐Bird, Naama P. Olender, Tsviya Porat, Ziv Winograd‐Katz, Sabina Savidor, Alon Levin, Yishai Bialik, Shani Geiger, Benjamin Kimchi, Adi Mol Oncol Research Articles Radiation therapy can induce cellular senescence in cancer cells, leading to short‐term tumor growth arrest but increased long‐term recurrence. To better understand the molecular mechanisms involved, we developed a model of radiation‐induced senescence in cultured cancer cells. The irradiated cells exhibited a typical senescent phenotype, including upregulation of p53 and its main target, p21, followed by a sustained reduction in cellular proliferation, changes in cell size and cytoskeleton organization, and senescence‐associated beta‐galactosidase activity. Mass spectrometry‐based proteomic profiling of the senescent cells indicated downregulation of proteins involved in cell cycle progression and DNA repair, and upregulation of proteins associated with malignancy. A functional siRNA screen using a cell death‐related library identified mitochondrial serine protease HtrA2 as being necessary for sustained growth arrest of the senescent cells. In search of direct HtrA2 substrates following radiation, we determined that HtrA2 cleaves the intermediate filament protein vimentin, affecting its cytoplasmic organization. Ectopic expression of active cytosolic HtrA2 resulted in similar changes to vimentin filament assembly. Thus, HtrA2 is involved in the cytoskeletal reorganization that accompanies radiation‐induced senescence and the continuous maintenance of proliferation arrest. John Wiley and Sons Inc. 2022-02-16 2022-03 /pmc/articles/PMC8936513/ /pubmed/35122388 http://dx.doi.org/10.1002/1878-0261.13187 Text en © 2022 The Authors. Molecular Oncology published by John Wiley & Sons Ltd on behalf of Federation of European Biochemical Societies https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Hammer, Liat
Levin‐Salomon, Vered
Yaeli‐Slonim, Naama
Weiss, Moria
Dekel‐Bird, Naama P.
Olender, Tsviya
Porat, Ziv
Winograd‐Katz, Sabina
Savidor, Alon
Levin, Yishai
Bialik, Shani
Geiger, Benjamin
Kimchi, Adi
A new function for the serine protease HtrA2 in controlling radiation‐induced senescence in cancer cells
title A new function for the serine protease HtrA2 in controlling radiation‐induced senescence in cancer cells
title_full A new function for the serine protease HtrA2 in controlling radiation‐induced senescence in cancer cells
title_fullStr A new function for the serine protease HtrA2 in controlling radiation‐induced senescence in cancer cells
title_full_unstemmed A new function for the serine protease HtrA2 in controlling radiation‐induced senescence in cancer cells
title_short A new function for the serine protease HtrA2 in controlling radiation‐induced senescence in cancer cells
title_sort new function for the serine protease htra2 in controlling radiation‐induced senescence in cancer cells
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8936513/
https://www.ncbi.nlm.nih.gov/pubmed/35122388
http://dx.doi.org/10.1002/1878-0261.13187
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