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Direct HPV E6/Myc interactions induce histone modifications, Pol II phosphorylation, and hTERT promoter activation

Human Papillomavirus Viruses (HPVs) are associated with the majority of human cervical and anal cancers and 10-30% of head and neck squamous carcinomas. E6 oncoprotein from high risk HPVs interacts with the p53 tumor suppressor protein to facilitate its degradation and increases telomerase activity...

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Autores principales: Zhang, Yiyu, Dakic, Aleksandra, Chen, Renxiang, Dai, Yuhai, Schlegel, Richard, Liu, Xuefeng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5707103/
https://www.ncbi.nlm.nih.gov/pubmed/29221209
http://dx.doi.org/10.18632/oncotarget.22036
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author Zhang, Yiyu
Dakic, Aleksandra
Chen, Renxiang
Dai, Yuhai
Schlegel, Richard
Liu, Xuefeng
author_facet Zhang, Yiyu
Dakic, Aleksandra
Chen, Renxiang
Dai, Yuhai
Schlegel, Richard
Liu, Xuefeng
author_sort Zhang, Yiyu
collection PubMed
description Human Papillomavirus Viruses (HPVs) are associated with the majority of human cervical and anal cancers and 10-30% of head and neck squamous carcinomas. E6 oncoprotein from high risk HPVs interacts with the p53 tumor suppressor protein to facilitate its degradation and increases telomerase activity for extending the life span of host cells. We published previously that the Myc cellular transcription factor associates with the high-risk HPV E6 protein in vivo and participates in the transactivation of the hTERT promoter. In the present study, we further analyzed the role of E6 and the Myc-Max-Mad network in regulating the hTERT promoter. We confirmed that E6 and Myc interact independently and that Max can also form a complex with E6. However, the E6/Max complex is observed only in the presence of Myc, suggesting that E6 associates with Myc/Max dimers. Consistent with the hypothesis that Myc is required for E6 induction of the hTERT promoter, Myc antagonists (Mad or Mnt) significantly blocked E6-mediated transactivation of the hTERT promoter. Analysis of Myc mutants demonstrated that both the transactivation domain and HLH domain of Myc protein were required for binding E6 and for the consequent transactivation of the hTERT promoter, by either Myc or E6. We also showed that E6 increased phosphorylation of Pol II on the hTERT promoter and induced epigenetic histone modifications of the hTERT promoter. More important, knockdown of Myc expression dramatically decreased engagement of acetyl-histones and Pol II at the hTERT promoter in E6-expressing cells. Thus, E6/Myc interaction triggers the transactivation of the hTERT promoter by modulating both histone modifications, Pol II phosphorylation and promoter engagement, suggesting a novel mechanism for telomerase activation and a new target for HPV- associated human cancer.
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spelling pubmed-57071032017-12-07 Direct HPV E6/Myc interactions induce histone modifications, Pol II phosphorylation, and hTERT promoter activation Zhang, Yiyu Dakic, Aleksandra Chen, Renxiang Dai, Yuhai Schlegel, Richard Liu, Xuefeng Oncotarget Research Paper Human Papillomavirus Viruses (HPVs) are associated with the majority of human cervical and anal cancers and 10-30% of head and neck squamous carcinomas. E6 oncoprotein from high risk HPVs interacts with the p53 tumor suppressor protein to facilitate its degradation and increases telomerase activity for extending the life span of host cells. We published previously that the Myc cellular transcription factor associates with the high-risk HPV E6 protein in vivo and participates in the transactivation of the hTERT promoter. In the present study, we further analyzed the role of E6 and the Myc-Max-Mad network in regulating the hTERT promoter. We confirmed that E6 and Myc interact independently and that Max can also form a complex with E6. However, the E6/Max complex is observed only in the presence of Myc, suggesting that E6 associates with Myc/Max dimers. Consistent with the hypothesis that Myc is required for E6 induction of the hTERT promoter, Myc antagonists (Mad or Mnt) significantly blocked E6-mediated transactivation of the hTERT promoter. Analysis of Myc mutants demonstrated that both the transactivation domain and HLH domain of Myc protein were required for binding E6 and for the consequent transactivation of the hTERT promoter, by either Myc or E6. We also showed that E6 increased phosphorylation of Pol II on the hTERT promoter and induced epigenetic histone modifications of the hTERT promoter. More important, knockdown of Myc expression dramatically decreased engagement of acetyl-histones and Pol II at the hTERT promoter in E6-expressing cells. Thus, E6/Myc interaction triggers the transactivation of the hTERT promoter by modulating both histone modifications, Pol II phosphorylation and promoter engagement, suggesting a novel mechanism for telomerase activation and a new target for HPV- associated human cancer. Impact Journals LLC 2017-10-25 /pmc/articles/PMC5707103/ /pubmed/29221209 http://dx.doi.org/10.18632/oncotarget.22036 Text en Copyright: © 2017 Zhang et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License 3.0 (http://creativecommons.org/licenses/by/3.0/) (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Zhang, Yiyu
Dakic, Aleksandra
Chen, Renxiang
Dai, Yuhai
Schlegel, Richard
Liu, Xuefeng
Direct HPV E6/Myc interactions induce histone modifications, Pol II phosphorylation, and hTERT promoter activation
title Direct HPV E6/Myc interactions induce histone modifications, Pol II phosphorylation, and hTERT promoter activation
title_full Direct HPV E6/Myc interactions induce histone modifications, Pol II phosphorylation, and hTERT promoter activation
title_fullStr Direct HPV E6/Myc interactions induce histone modifications, Pol II phosphorylation, and hTERT promoter activation
title_full_unstemmed Direct HPV E6/Myc interactions induce histone modifications, Pol II phosphorylation, and hTERT promoter activation
title_short Direct HPV E6/Myc interactions induce histone modifications, Pol II phosphorylation, and hTERT promoter activation
title_sort direct hpv e6/myc interactions induce histone modifications, pol ii phosphorylation, and htert promoter activation
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5707103/
https://www.ncbi.nlm.nih.gov/pubmed/29221209
http://dx.doi.org/10.18632/oncotarget.22036
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