表观遗传学
染色质
重编程
H3K4me3
癌症
组蛋白
生物
癌变
遗传学
DNA甲基化
肿瘤微环境
癌症研究
发起人
基因表达
基因
作者
Canhui Cao,Qian Xu,Zhixian Zhu,Miaochun Xu,Wei Ye,Shitong Lin,Cheng Sheng,Wenhua Zhi,Ping Hong,Xingyu Huang,Da Lin,Gang Cao,Yifan Meng,Ping Wu,Ting Peng,Juncheng Wei,Wencheng Ding,Xiaoyuan Huang,Wing‐Kin Sung,Gang Chen,Ding Ma,Guoliang Li,Peng Wu
出处
期刊:Cancer Letters
[Elsevier]
日期:2024-03-11
卷期号:588: 216809-216809
被引量:3
标识
DOI:10.1016/j.canlet.2024.216809
摘要
Human papillomavirus (HPV) is predominantly associated with HPV-related cancers, however, the precise mechanisms underlying the HPV-host epigenetic architectures in HPV carcinogenesis remain elusive. Here, we employed high-throughput chromosome conformation capture (Hi-C) to comprehensively map HPV16/18-host chromatin interactions. Our study identified the transcription factor Sp1 as a pivotal mediator in programming HPV-host interactions. By targeting Sp1, the active histone modifications (H3K27ac, H3K4me1, and H3K4me3) and the HPV-host chromatin interactions are reprogrammed, which leads to the downregulation of oncogenes located near the integration sites in both HPV (E6/E7) and the host genome (KLF5/MYC). Additionally, Sp1 inhibition led to the upregulation of immune checkpoint genes by reprogramming histone modifications in host cells. Notably, humanized patient-derived xenograft (PDX-HuHSC-NSG) models demonstrated that Sp1 inhibition promoted anti-PD-1 immunotherapy via remodeling the tumor immune microenvironment in cervical cancer. Moreover, single-cell transcriptomic analysis validated the enrichment of transcription factor Sp1 in epithelial cells of cervical cancer. In summary, our findings elucidate Sp1 as a key mediator involved in the programming and reprogramming of HPV-host epigenetic architecture. Inhibiting Sp1 with plicamycin may represent a promising therapeutic option for HPV-related carcinoma therapy.
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