生物
转录调控
雌激素受体
基因敲除
三苯氧胺
癌变
调节器
癌症研究
乳腺癌
癌症
RNA干扰
基因
基因表达
遗传学
核糖核酸
作者
Lisa Dwane,Aisling O’Connor,Sudipto Das,Bruce Moran,Laoighse Mulrane,Adán Pinto-Fernández,Elspeth Ward,Anna Blümel,Brenton Cavanagh,Brian Mooney,Annette M.G. Dirac,Karin Jirström,Benedikt M. Kessler,Tríona Ní Chonghaile,René Bernards,William M. Gallagher,Darran P. O’Connor
出处
期刊:Cancer Research
[American Association for Cancer Research]
日期:2020-10-01
卷期号:80 (22): 5076-5088
被引量:25
标识
DOI:10.1158/0008-5472.can-20-0214
摘要
Approximately 70% of breast cancers express estrogen receptor α (ERα) and depend on this key transcriptional regulator for proliferation and differentiation. While patients with this disease can be treated with targeted antiendocrine agents, drug resistance remains a significant issue, with almost half of patients ultimately relapsing. Elucidating the mechanisms that control ERα function may further our understanding of breast carcinogenesis and reveal new therapeutic opportunities. Here, we investigated the role of deubiquitinases (DUB) in regulating ERα in breast cancer. An RNAi loss-of-function screen in breast cancer cells targeting all DUBs identified USP11 as a regulator of ERα transcriptional activity, which was further validated by assessment of direct transcriptional targets of ERα. USP11 expression was induced by estradiol, an effect that was blocked by tamoxifen and not observed in ERα-negative cells. Mass spectrometry revealed a significant change to the proteome and ubiquitinome in USP11-knockdown (KD) cells in the presence of estradiol. RNA sequencing in LCC1 USP11-KD cells revealed significant suppression of cell-cycle-associated and ERα target genes, phenotypes that were not observed in LCC9 USP11-KD, antiendocrine-resistant cells. In a breast cancer patient cohort coupled with in silico analysis of publicly available cohorts, high expression of USP11 was significantly associated with poor survival in ERα-positive (ERα+) patients. Overall, this study highlights a novel role for USP11 in the regulation of ERα activity, where USP11 may represent a prognostic marker in ERα+ breast cancer. SIGNIFICANCE: A newly identified role for USP11 in ERα transcriptional activity represents a novel mechanism of ERα regulation and a pathway to be exploited for the management of ER-positive breast cancer.
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