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miR-30 Disrupts Senescence and Promotes Cancer by Targeting both p16(INK4A) and DNA Damage Pathways

miR-30 is a microRNA frequently overexpressed in human cancers. However, the biological consequence of miR-30 overexpression in cancer has been unclear. In a genetic screen, miR-30 was found to abrogate oncogenic-induced senescence, a key tumor-suppressing mechanism that involves DNA damage response...

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Autores principales: Su, Weijun, Hong, Lixin, Xu, Xin, Huang, Shan, Herpai, Denise, Li, Lisheng, Xu, Yingxi, Truong, Lan, Hu, Wen-Yuan, Wu, Xiaohua, Xiao, Changchun, Zhang, Wei, Han, Jiahuai, Debinski, Waldemar, Xiang, Rong, Sun, Peiqing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6195819/
https://www.ncbi.nlm.nih.gov/pubmed/29907771
http://dx.doi.org/10.1038/s41388-018-0358-1
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author Su, Weijun
Hong, Lixin
Xu, Xin
Huang, Shan
Herpai, Denise
Li, Lisheng
Xu, Yingxi
Truong, Lan
Hu, Wen-Yuan
Wu, Xiaohua
Xiao, Changchun
Zhang, Wei
Han, Jiahuai
Debinski, Waldemar
Xiang, Rong
Sun, Peiqing
author_facet Su, Weijun
Hong, Lixin
Xu, Xin
Huang, Shan
Herpai, Denise
Li, Lisheng
Xu, Yingxi
Truong, Lan
Hu, Wen-Yuan
Wu, Xiaohua
Xiao, Changchun
Zhang, Wei
Han, Jiahuai
Debinski, Waldemar
Xiang, Rong
Sun, Peiqing
author_sort Su, Weijun
collection PubMed
description miR-30 is a microRNA frequently overexpressed in human cancers. However, the biological consequence of miR-30 overexpression in cancer has been unclear. In a genetic screen, miR-30 was found to abrogate oncogenic-induced senescence, a key tumor-suppressing mechanism that involves DNA damage responses, activation of p53 and induction of p16(INK4A). In cells and mouse models, miR-30 disrupts senescence and promotes cancer by suppressing 2 targets, CHD7 and TNRC6A. We show that while CHD7 is a transcriptional coactivator essential for induction of p16(INK4A) in senescent cells, TNRC6A, a miRNA machinery component, is required for expression and functionality of DNA damage response RNAs (DDRNAs) that mediate DNA damage responses and p53 activation by orchestrating histone modifications, chromatin remodeling and recruitment of DNA damage factors at damaged sites. Thus, miR-30 inhibits both p16(INK4A) and p53, 2 key senescence effectors, leading to efficient senescence disruption. These findings have identified novel signaling pathways mediating oncogene-induced senescence and tumor-suppression, and revealed the molecular and cellular mechanisms underlying the oncogenic activity of miR-30. Thus, the miR-30/CHD7/TNRC6A pathway is potentially a novel diagnostic biomarker and therapeutic target for cancer.
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spelling pubmed-61958192018-12-15 miR-30 Disrupts Senescence and Promotes Cancer by Targeting both p16(INK4A) and DNA Damage Pathways Su, Weijun Hong, Lixin Xu, Xin Huang, Shan Herpai, Denise Li, Lisheng Xu, Yingxi Truong, Lan Hu, Wen-Yuan Wu, Xiaohua Xiao, Changchun Zhang, Wei Han, Jiahuai Debinski, Waldemar Xiang, Rong Sun, Peiqing Oncogene Article miR-30 is a microRNA frequently overexpressed in human cancers. However, the biological consequence of miR-30 overexpression in cancer has been unclear. In a genetic screen, miR-30 was found to abrogate oncogenic-induced senescence, a key tumor-suppressing mechanism that involves DNA damage responses, activation of p53 and induction of p16(INK4A). In cells and mouse models, miR-30 disrupts senescence and promotes cancer by suppressing 2 targets, CHD7 and TNRC6A. We show that while CHD7 is a transcriptional coactivator essential for induction of p16(INK4A) in senescent cells, TNRC6A, a miRNA machinery component, is required for expression and functionality of DNA damage response RNAs (DDRNAs) that mediate DNA damage responses and p53 activation by orchestrating histone modifications, chromatin remodeling and recruitment of DNA damage factors at damaged sites. Thus, miR-30 inhibits both p16(INK4A) and p53, 2 key senescence effectors, leading to efficient senescence disruption. These findings have identified novel signaling pathways mediating oncogene-induced senescence and tumor-suppression, and revealed the molecular and cellular mechanisms underlying the oncogenic activity of miR-30. Thus, the miR-30/CHD7/TNRC6A pathway is potentially a novel diagnostic biomarker and therapeutic target for cancer. 2018-06-15 2018-10 /pmc/articles/PMC6195819/ /pubmed/29907771 http://dx.doi.org/10.1038/s41388-018-0358-1 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Su, Weijun
Hong, Lixin
Xu, Xin
Huang, Shan
Herpai, Denise
Li, Lisheng
Xu, Yingxi
Truong, Lan
Hu, Wen-Yuan
Wu, Xiaohua
Xiao, Changchun
Zhang, Wei
Han, Jiahuai
Debinski, Waldemar
Xiang, Rong
Sun, Peiqing
miR-30 Disrupts Senescence and Promotes Cancer by Targeting both p16(INK4A) and DNA Damage Pathways
title miR-30 Disrupts Senescence and Promotes Cancer by Targeting both p16(INK4A) and DNA Damage Pathways
title_full miR-30 Disrupts Senescence and Promotes Cancer by Targeting both p16(INK4A) and DNA Damage Pathways
title_fullStr miR-30 Disrupts Senescence and Promotes Cancer by Targeting both p16(INK4A) and DNA Damage Pathways
title_full_unstemmed miR-30 Disrupts Senescence and Promotes Cancer by Targeting both p16(INK4A) and DNA Damage Pathways
title_short miR-30 Disrupts Senescence and Promotes Cancer by Targeting both p16(INK4A) and DNA Damage Pathways
title_sort mir-30 disrupts senescence and promotes cancer by targeting both p16(ink4a) and dna damage pathways
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6195819/
https://www.ncbi.nlm.nih.gov/pubmed/29907771
http://dx.doi.org/10.1038/s41388-018-0358-1
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