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VPRBP Functions Downstream of the Androgen Receptor and OGT to Restrict p53 Activation in Prostate Cancer

Ninu Poulose, Nicholas Forsythe, Adam Polonski, Gemma Gregg, Sarah Maguire, Marc Fuchs, Sarah Minner, Guido Sauter, Simon S. McDade, Ian G. Mills

2022Molecular Cancer Research11 citationsDOIOpen Access PDF

Abstract

Androgen receptor (AR) is a major driver of prostate cancer initiation and progression. O-GlcNAc transferase (OGT), the enzyme that catalyzes the covalent addition of UDP-N-acetylglucosamine (UDP-GlcNAc) to serine and threonine residues of proteins, is often highly expressed in prostate cancer with its expression correlated with high Gleason score. In this study, we have identified an AR and OGT coregulated factor, Vpr (HIV-1) binding protein (VPRBP) also known as DDB1 and CUL4 Associated Factor 1 (DCAF1). We show that VPRBP is regulated by the AR at the transcript level, and stabilized by OGT at the protein level. VPRBP knockdown in prostate cancer cells led to a significant decrease in cell proliferation, p53 stabilization, nucleolar fragmentation, and increased p53 recruitment to the chromatin. In human prostate tumor samples, VPRBP protein overexpression correlated with AR amplification, OGT overexpression, a shorter time to postoperative biochemical progression and poor clinical outcome. In clinical transcriptomic data, VPRBP expression was positively correlated with the AR and also with AR activity gene signatures. IMPLICATIONS: In conclusion, we have shown that VPRBP/DCAF1 promotes prostate cancer cell proliferation by restraining p53 activation under the influence of the AR and OGT.

Topics & Concepts

Prostate cancerAndrogen receptorCancer researchDownstream (manufacturing)Cell growthChemistryCancerReceptorProstateCancer cellP53 proteinCellCell cycle progressionApoptosisBiologyAndrogenCell cultureMedicineSignal transductionGlycosylation and Glycoproteins ResearchImmunotherapy and Immune ResponsesGalectins and Cancer Biology
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