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Published on: August 25, 2021
E2F1 induces pituitary tumor transforming gene (PTTG1) expression in human pituitary tumors
Cuiqi Zhou1, Kolja Wawrowsky, Serguei Bannykh
1Department of Medicine, Cedars-Sinai Medical Center, David Geffen School of Medicine at UCLA, Los Angeles, California 90048, USA.
Abstract:
Rb/E2F is dysregulated in murine and human pituitary tumors. Pituitary tumor transforming gene (PTTG1), a securin protein, is required for pituitary tumorigenesis, and PTTG1 deletion attenuates pituitary tumor development in Rb(+/-) mice. E2F1 and PTTG1 were concordantly overexpressed in 29 of 46 Rb(+/-) murine pituitary tissues and also in 45 of 80 human pituitary tumors (P < 0.05). E2F1 specifically bound the hPTTG1 promoter as assessed by chromatin immunoprecipitation and biotin-streptavidin pull-down assay, indicating that hPTTG1 may act as a direct E2F1 target. Transfection of E2F1 and its partner DP1 dose-dependently activated hPTTG1 transcription up to 3-fold in p53-devoid H1299 cells but not in p53-replete HCT116 cells. E2F1 overexpression enhanced endogenous hPTTG1 mRNA and protein levels up to 3-fold in H1299 cells. The presence of endogenous p53/p21 constrained the induction, whereas knocking down either p53 or p21 in HCT116 cells restored E2F1-induced hPTTG1 transactivation and expression. Moreover, suppressing Rb by small interfering RNA concordantly elevated E2F1 and hPTTG1 protein levels. In contrast, transfection of E2F1 small interfering RNA lowered hPTTG1 levels 24 h later in HCT116 than in H1299 cells, indicating that p53 delays E2F1 action on hPTTG1. These results elucidate a mechanism for abundant tumor hPTTG1 expression, whereby Rb inactivation releases E2F1 to induce hPTTG1. This signaling pathway may underlie the requirement of PTTG1 for pituitary tumorigenesis.
Insights
Retinoblastoma (Rb) protein inactivation releases E2F1, which drives pituitary tumor transforming gene (PTTG1) expression, promoting pituitary tumor growth. This pathway explains PTTG1
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Rb/E2F pathway dysregulation is implicated in pituitary tumors.
- Pituitary tumor transforming gene (PTTG1) is crucial for pituitary tumorigenesis.
- PTTG1 deletion attenuates pituitary tumor development in Rb(+/-) mice.
Purpose of the Study:
- To elucidate the mechanism of PTTG1 overexpression in pituitary tumors.
- To investigate the role of E2F1 and p53 in regulating PTTG1 transcription.
- To understand the relationship between Rb inactivation and PTTG1 expression.
Main Methods:
- Chromatin immunoprecipitation (ChIP) and biotin-streptavidin pull-down assays to assess E2F1 binding to the hPTTG1 promoter.
- Gene transfection and small interfering RNA (siRNA) knockdown experiments in H1299 and HCT116 cell lines.
- Quantitative analysis of mRNA and protein levels of E2F1 and PTTG1.
Main Results:
- E2F1 directly binds to the hPTTG1 promoter, acting as a transcriptional target.
- E2F1 and PTTG1 are concordantly overexpressed in Rb(+/-) murine and human pituitary tumors.
- p53 and p21 constrain E2F1-mediated hPTTG1 induction, while Rb suppression elevates both E2F1 and hPTTG1.
- p53 delays E2F1's action on hPTTG1 expression.
Conclusions:
- Rb inactivation releases E2F1, leading to PTTG1 induction and pituitary tumorigenesis.
- The E2F1-PTTG1 signaling pathway is a key mechanism driving pituitary tumor development.
- Targeting this pathway could offer therapeutic strategies for pituitary tumors.
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