C/EBPβ enhances platinum resistance of ovarian cancer cells by reprogramming H3K79 methylation

In ovarian cancer, the mechanism of chemoresistance is a key question. Here, the authors demonstrate that C/EBPβ and DOT1L together increase methylation of H3K79, which upregulates expression of oncogenic genes and drives poor platinum response and poor survival in ovarian cancer.

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Autores principales: Dan Liu, Xiao-Xue Zhang, Meng-Chen Li, Can-Hui Cao, Dong-Yi Wan, Bi-Xin Xi, Jia-Hong Tan, Ji Wang, Zong-Yuan Yang, Xin-Xia Feng, Fei Ye, Gang Chen, Peng Wu, Ling Xi, Hui Wang, Jian-Feng Zhou, Zuo-Hua Feng, Ding Ma, Qing-Lei Gao
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Lenguaje:EN
Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/c9b30596b94249a2a0f1f7ff2dd6da2e
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spelling oai:doaj.org-article:c9b30596b94249a2a0f1f7ff2dd6da2e2021-12-02T16:49:50ZC/EBPβ enhances platinum resistance of ovarian cancer cells by reprogramming H3K79 methylation10.1038/s41467-018-03590-52041-1723https://doaj.org/article/c9b30596b94249a2a0f1f7ff2dd6da2e2018-04-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-03590-5https://doaj.org/toc/2041-1723In ovarian cancer, the mechanism of chemoresistance is a key question. Here, the authors demonstrate that C/EBPβ and DOT1L together increase methylation of H3K79, which upregulates expression of oncogenic genes and drives poor platinum response and poor survival in ovarian cancer.Dan LiuXiao-Xue ZhangMeng-Chen LiCan-Hui CaoDong-Yi WanBi-Xin XiJia-Hong TanJi WangZong-Yuan YangXin-Xia FengFei YeGang ChenPeng WuLing XiHui WangJian-Feng ZhouZuo-Hua FengDing MaQing-Lei GaoNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-13 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Dan Liu
Xiao-Xue Zhang
Meng-Chen Li
Can-Hui Cao
Dong-Yi Wan
Bi-Xin Xi
Jia-Hong Tan
Ji Wang
Zong-Yuan Yang
Xin-Xia Feng
Fei Ye
Gang Chen
Peng Wu
Ling Xi
Hui Wang
Jian-Feng Zhou
Zuo-Hua Feng
Ding Ma
Qing-Lei Gao
C/EBPβ enhances platinum resistance of ovarian cancer cells by reprogramming H3K79 methylation
description In ovarian cancer, the mechanism of chemoresistance is a key question. Here, the authors demonstrate that C/EBPβ and DOT1L together increase methylation of H3K79, which upregulates expression of oncogenic genes and drives poor platinum response and poor survival in ovarian cancer.
format article
author Dan Liu
Xiao-Xue Zhang
Meng-Chen Li
Can-Hui Cao
Dong-Yi Wan
Bi-Xin Xi
Jia-Hong Tan
Ji Wang
Zong-Yuan Yang
Xin-Xia Feng
Fei Ye
Gang Chen
Peng Wu
Ling Xi
Hui Wang
Jian-Feng Zhou
Zuo-Hua Feng
Ding Ma
Qing-Lei Gao
author_facet Dan Liu
Xiao-Xue Zhang
Meng-Chen Li
Can-Hui Cao
Dong-Yi Wan
Bi-Xin Xi
Jia-Hong Tan
Ji Wang
Zong-Yuan Yang
Xin-Xia Feng
Fei Ye
Gang Chen
Peng Wu
Ling Xi
Hui Wang
Jian-Feng Zhou
Zuo-Hua Feng
Ding Ma
Qing-Lei Gao
author_sort Dan Liu
title C/EBPβ enhances platinum resistance of ovarian cancer cells by reprogramming H3K79 methylation
title_short C/EBPβ enhances platinum resistance of ovarian cancer cells by reprogramming H3K79 methylation
title_full C/EBPβ enhances platinum resistance of ovarian cancer cells by reprogramming H3K79 methylation
title_fullStr C/EBPβ enhances platinum resistance of ovarian cancer cells by reprogramming H3K79 methylation
title_full_unstemmed C/EBPβ enhances platinum resistance of ovarian cancer cells by reprogramming H3K79 methylation
title_sort c/ebpβ enhances platinum resistance of ovarian cancer cells by reprogramming h3k79 methylation
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/c9b30596b94249a2a0f1f7ff2dd6da2e
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