Rescue of p53 function by small-molecule RITA in cervical carcinoma by blocking E6-mediated degradation.

Abstract:

:Proteasomal degradation of p53 by human papilloma virus (HPV) E6 oncoprotein plays a pivotal role in the survival of cervical carcinoma cells. Abrogation of HPV-E6-dependent p53 destruction can therefore be a good strategy to combat cervical carcinomas. Here, we show that a small-molecule reactivation of p53 and induction of tumor cell apoptosis (RITA) is able to induce the accumulation of p53 and rescue its tumor suppressor function in cells containing high-risk HPV16 and HPV18 by inhibiting HPV-E6-mediated proteasomal degradation. RITA blocks p53 ubiquitination by preventing p53 interaction with E6-associated protein, required for HPV-E6-mediated degradation. RITA activates the transcription of proapoptotic p53 targets Noxa, PUMA, and BAX, and repressed the expression of pro-proliferative factors CyclinB1, CDC2, and CDC25C, resulting in p53-dependent apoptosis and cell cycle arrest. Importantly, RITA showed substantial suppression of cervical carcinoma xenografts in vivo. These results provide a proof of principle for the treatment of cervical cancer in a p53-dependent manner by using small molecules that target p53.

journal_name

Cancer Res

journal_title

Cancer research

authors

Zhao CY,Szekely L,Bao W,Selivanova G

doi

10.1158/0008-5472.CAN-09-2787

subject

Has Abstract

pub_date

2010-04-15 00:00:00

pages

3372-81

issue

8

eissn

0008-5472

issn

1538-7445

pii

70/8/3372

journal_volume

70

pub_type

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