4.4 Article

AR-mTOR-SRF Axis Regulates HMMR Expression in Human Prostate Cancer Cells

期刊

BIOMOLECULES & THERAPEUTICS
卷 29, 期 6, 页码 667-677

出版社

KOREAN SOC APPLIED PHARMACOLOGY
DOI: 10.4062/biomolther.2021.040

关键词

HMMR; SRF; mTOR; Transcriptional regulation; Androgen receptor; Prostate cancer

资金

  1. National Research Foundation of Korea (NRF) - Ministry of Education, Science, and Technology [NRF-2018R1D1A1B07050063]

向作者/读者索取更多资源

The study identified mTOR as a key regulator of HMMR expression, with its activity required for HMMR transcriptional regulation by SRF located in the HMMR promoter sequences. Inhibition of mTOR activity can abolish the upregulation of HMMR by androgen stimulation.
The elevated expression of the hyaluronan-mediated motility receptor (HMMR) is known to be highly associated with tumor progression in prostate cancer, but the molecular mechanisms underlying the regulation of HMMR expression remain unclear. Here, we report that mammalian target of rapamycin (mTOR) is a key regulator of HMMR expression, for which its kinase activity is required. Pharmacological inhibitors of mTOR, such as rapamycin and Torin2, markedly suppressed the mRNA level as well as the protein level of HMMR in LNCaP and PC-3 cells. Our data demonstrate that such regulation occurs at the transcription level. HMMR promoter reporter assays revealed that the transcription factor SRF is responsible for the mTOR-mediated transcriptional regulation of HMMR gene. Consistently, the suppression of HMMR expression by Torin2 was noticeably reversed by the overexpression of SRF. Moreover, our findings suggest that the SRF binding sites responsible for the transcriptional regulation of HMMR through the mTOR-SRF axis are located in HMMR promoter sequences carrying the first intron, downstream of the translational start site. Furthermore, the upregulation of HMMR by DHT was abolished by stimulation with rapamycin, prior to DHT treatment, suggesting that mTOR activity is required for the induction of HMMR expression by androgen. Collectively, our study provides new mechanistic insights into the role of mTOR/SRF/AR signaling in HMMR regulation in prostate cancer cells.

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