体内
抑制器
癌症研究
化学
体外
平方毫米
细胞凋亡
半胱氨酸
细胞生物学
小分子
泛素
功能(生物学)
肿瘤进展
分子生物学
赫拉
下调和上调
作用机理
共价键
转染
转录组
MDMX公司
转基因
衰老
癌症
毒性
生物化学
抑癌基因
人乳头瘤病毒
生物
细胞培养
细胞生长
癌细胞
自噬
HEK 293细胞
血浆蛋白结合
作者
Anne Rietz,Lokesh Kumari,Ankeeta Koirala,S. William Pelletier,Zhijian Lu,Elliot J. Androphy
标识
DOI:10.1073/pnas.2606213123
摘要
High-risk human papillomaviruses (HPVs) promote malignant progression through sustained expression of the viral oncoprotein E6, which drives degradation of the tumor suppressor p53 and creates an oncogenic dependency in HPV-positive cancers. Here, we identify a genotype-defined therapeutic vulnerability by selectively and irreversibly inactivating HPV-16 E6 through covalent targeting a cysteine proximal to its E6AP-binding interface. Pharmacologic inhibition of E6 restored p53 protein stability and transcriptional activity in HPV-16-positive cancer cells, inducing apoptosis and senescence while sparing HPV-negative epithelial cells. A CRISPR-engineered E6 cysteine-to-serine knock-in abolished compound activity in vitro and in vivo, establishing on-target mechanism. Transcriptomic profiling confirmed activation of p53-dependent tumor suppressor programs following E6 inactivation. In xenograft models of cervical and oropharyngeal cancer, irreversible inhibition of E6 suppressed growth of established tumors with minimal toxicity and no evidence of acquired resistance. These findings support covalent inactivation of HPV-16 E6 by a small molecule as a therapeutic strategy for HPV-associated malignancies.
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