首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >PNAS Plus: PTPN14 degradation by high-risk human papillomavirus E7 limits keratinocyte differentiation and contributes to HPV-mediated oncogenesis
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PNAS Plus: PTPN14 degradation by high-risk human papillomavirus E7 limits keratinocyte differentiation and contributes to HPV-mediated oncogenesis

机译:PNAS Plus:高风险人乳头瘤病毒E7降解PTPN14限制了角质形成细胞的分化并促进了HPV介导的肿瘤发生

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摘要

High-risk human papillomavirus (HPV) E7 proteins enable oncogenic transformation of HPV-infected cells by inactivating host cellular proteins. High-risk but not low-risk HPV E7 target PTPN14 for proteolytic degradation, suggesting that PTPN14 degradation may be related to their oncogenic activity. HPV infects human keratinocytes but the role of PTPN14 in keratinocytes and the consequences of PTPN14 degradation are unknown. Using an HPV16 E7 variant that can inactivate retinoblastoma tumor suppressor (RB1) but cannot degrade PTPN14, we found that high-risk HPV E7-mediated PTPN14 degradation impairs keratinocyte differentiation. Deletion of PTPN14 from primary human keratinocytes decreased keratinocyte differentiation gene expression. Related to oncogenic transformation, both HPV16 E7-mediated PTPN14 degradation and PTPN14 deletion promoted keratinocyte survival following detachment from a substrate. PTPN14 degradation contributed to high-risk HPV E6/E7-mediated immortalization of primary keratinocytes and HPV+ but not HPV cancers exhibit a gene-expression signature consistent with PTPN14 inactivation. We find that PTPN14 degradation impairs keratinocyte differentiation and propose that this contributes to high-risk HPV E7-mediated oncogenic activity independent of RB1 inactivation.
机译:高危人类乳头瘤病毒(HPV)E7蛋白可通过灭活宿主细胞蛋白来使HPV感染的细胞致癌转化。高风险而不是低风险的HPV E7将PTPN14作为蛋白水解降解的靶标,这表明PTPN14降解可能与其致癌活性有关。 HPV感染人角质形成细胞,但PTPN14在角质形成细胞中的作用以及PTPN14降解的后果尚不清楚。使用可以灭活视网膜母细胞瘤抑癌剂(RB1)但不能降解PTPN14的HPV16 E7变体,我们发现高危HPV E7介导的PTPN14降解会损害角质形成细胞的分化。从原代人角质形成细胞中删除PTPN14会降低角质形成细胞分化基因的表达。与致癌转化相关,HPV16 E7介导的PTPN14降解和PTPN14缺失均促进了从底物脱离后的角质形成细胞存活。 PTPN14降解有助于高危HPV E6 / E7介导的原代角质形成细胞的永生化,而HPV + 却不显示HPV -癌症的基因表达特征与PTPN14失活一致。我们发现PTPN14降解会损害角质形成细胞的分化,并提出这有助于独立于RB1失活的高危HPV E7介导的致癌活性。

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