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High Risk α-HPV E6 Impairs Translesion Synthesis by Blocking POLη Induction

SIMPLE SUMMARY: Cervical cancers (CaCx) are caused by the expression of human papillomavirus oncogenes (HPV E6 and E7). Here, in vitro assays, computational approaches and immunohistochemical analysis of cervical biopsies show that HPV oncogenes impair translesion synthesis (TLS). This limits the pa...

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Autores principales: Wendel, Sebastian O., Snow, Jazmine A., Bastian, Tyler, Brown, Laura, Hernandez, Candy, Burghardt, Emily, Kahn, Andrew, Murthy, Vaibhav, Neill, Daniel, Smith, Zachary C., Ault, Kevin, Tawfik, Ossama, Wu, Cen, Wallace, Nicholas A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7793514/
https://www.ncbi.nlm.nih.gov/pubmed/33374731
http://dx.doi.org/10.3390/cancers13010028
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author Wendel, Sebastian O.
Snow, Jazmine A.
Bastian, Tyler
Brown, Laura
Hernandez, Candy
Burghardt, Emily
Kahn, Andrew
Murthy, Vaibhav
Neill, Daniel
Smith, Zachary C.
Ault, Kevin
Tawfik, Ossama
Wu, Cen
Wallace, Nicholas A.
author_facet Wendel, Sebastian O.
Snow, Jazmine A.
Bastian, Tyler
Brown, Laura
Hernandez, Candy
Burghardt, Emily
Kahn, Andrew
Murthy, Vaibhav
Neill, Daniel
Smith, Zachary C.
Ault, Kevin
Tawfik, Ossama
Wu, Cen
Wallace, Nicholas A.
author_sort Wendel, Sebastian O.
collection PubMed
description SIMPLE SUMMARY: Cervical cancers (CaCx) are caused by the expression of human papillomavirus oncogenes (HPV E6 and E7). Here, in vitro assays, computational approaches and immunohistochemical analysis of cervical biopsies show that HPV oncogenes impair translesion synthesis (TLS). This limits the pathway’s ability to prevent replication stress from causing fork collapse and DNA damage. As a result, HPV oncogenes make cells more sensitive to replication stressing agents, such as Cisplatin. Mechanistically, HPV E6 prevents replication stress from triggering the accumulation of a TLS-specific polymerase (POLη). Supplying exogenous POLη to CaCx cells rescues TLS and lowers Cisplatin toxicity. ABSTRACT: High risk genus α human papillomaviruses (α-HPVs) express two versatile oncogenes (α-HPV E6 and E7) that cause cervical cancer (CaCx) by degrading tumor suppressor proteins (p53 and RB). α-HPV E7 also promotes replication stress and alters DNA damage responses (DDR). The translesion synthesis pathway (TLS) mitigates DNA damage by preventing replication stress from causing replication fork collapse. Computational analysis of gene expression in CaCx transcriptomic datasets identified a frequent increased expression of TLS genes. However, the essential TLS polymerases did not follow this pattern. These data were confirmed with in vitro and ex vivo systems. Further interrogation of TLS, using POLη as a representative TLS polymerase, demonstrated that α-HPV16 E6 blocks TLS polymerase induction by degrading p53. This doomed the pathway, leading to increased replication fork collapse and sensitivity to treatments that cause replication stress (e.g., UV and Cisplatin). This sensitivity could be overcome by the addition of exogenous POLη.
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spelling pubmed-77935142021-01-09 High Risk α-HPV E6 Impairs Translesion Synthesis by Blocking POLη Induction Wendel, Sebastian O. Snow, Jazmine A. Bastian, Tyler Brown, Laura Hernandez, Candy Burghardt, Emily Kahn, Andrew Murthy, Vaibhav Neill, Daniel Smith, Zachary C. Ault, Kevin Tawfik, Ossama Wu, Cen Wallace, Nicholas A. Cancers (Basel) Article SIMPLE SUMMARY: Cervical cancers (CaCx) are caused by the expression of human papillomavirus oncogenes (HPV E6 and E7). Here, in vitro assays, computational approaches and immunohistochemical analysis of cervical biopsies show that HPV oncogenes impair translesion synthesis (TLS). This limits the pathway’s ability to prevent replication stress from causing fork collapse and DNA damage. As a result, HPV oncogenes make cells more sensitive to replication stressing agents, such as Cisplatin. Mechanistically, HPV E6 prevents replication stress from triggering the accumulation of a TLS-specific polymerase (POLη). Supplying exogenous POLη to CaCx cells rescues TLS and lowers Cisplatin toxicity. ABSTRACT: High risk genus α human papillomaviruses (α-HPVs) express two versatile oncogenes (α-HPV E6 and E7) that cause cervical cancer (CaCx) by degrading tumor suppressor proteins (p53 and RB). α-HPV E7 also promotes replication stress and alters DNA damage responses (DDR). The translesion synthesis pathway (TLS) mitigates DNA damage by preventing replication stress from causing replication fork collapse. Computational analysis of gene expression in CaCx transcriptomic datasets identified a frequent increased expression of TLS genes. However, the essential TLS polymerases did not follow this pattern. These data were confirmed with in vitro and ex vivo systems. Further interrogation of TLS, using POLη as a representative TLS polymerase, demonstrated that α-HPV16 E6 blocks TLS polymerase induction by degrading p53. This doomed the pathway, leading to increased replication fork collapse and sensitivity to treatments that cause replication stress (e.g., UV and Cisplatin). This sensitivity could be overcome by the addition of exogenous POLη. MDPI 2020-12-23 /pmc/articles/PMC7793514/ /pubmed/33374731 http://dx.doi.org/10.3390/cancers13010028 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Wendel, Sebastian O.
Snow, Jazmine A.
Bastian, Tyler
Brown, Laura
Hernandez, Candy
Burghardt, Emily
Kahn, Andrew
Murthy, Vaibhav
Neill, Daniel
Smith, Zachary C.
Ault, Kevin
Tawfik, Ossama
Wu, Cen
Wallace, Nicholas A.
High Risk α-HPV E6 Impairs Translesion Synthesis by Blocking POLη Induction
title High Risk α-HPV E6 Impairs Translesion Synthesis by Blocking POLη Induction
title_full High Risk α-HPV E6 Impairs Translesion Synthesis by Blocking POLη Induction
title_fullStr High Risk α-HPV E6 Impairs Translesion Synthesis by Blocking POLη Induction
title_full_unstemmed High Risk α-HPV E6 Impairs Translesion Synthesis by Blocking POLη Induction
title_short High Risk α-HPV E6 Impairs Translesion Synthesis by Blocking POLη Induction
title_sort high risk α-hpv e6 impairs translesion synthesis by blocking polη induction
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7793514/
https://www.ncbi.nlm.nih.gov/pubmed/33374731
http://dx.doi.org/10.3390/cancers13010028
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