| General information | Literature | Expression | lncRNA |Regulation | Mutation | Homolog | Interaction |
Basic Information | |
|---|---|
Gene ID | 367 |
Name | AR |
Sentence | From PubMed database |
| Activated androgen receptor downregulates E-cadherin gene expression and promotes tumor metastasis. | The loss of E-cadherin gene expression can cause the dysfunction of the cell-cell junction to trigger tumor metastasis. Members of the Snail family of transcription factors are repressors of the expression of the E-cadherin gene. In this study, we showed that the activated androgen receptor (AR) is a novel repressor of E-cadherin gene expression and can promote metastasis. Our results demonstrated that the activated AR could bind to the E-cadherin promoter in vitro and in vivo. The activated AR and HDAC1 had synergistic effects in downregulating E-cadherin gene expression. Treating cells with the AR ligand, dihydrotestosterone (DHT), triggered the reduction of E-cadherin expression and induced changes in cell morphology from an epithelial-like to a mesenchymal-like appearance. When nonmetastatic breast cancer cells expressing cytoplasmic AR were transplanted into mice and the mice were treated with DHT, tumors were detected at metastatic sites, whereas no tumors were detected in transplanted mice without DHT treatment. Furthermore, clinical data from breast cancer patients with invasive ductal carcinomas showed high levels of AR expression in the nuclei and low levels of E-cadherin expression. These results suggest that, similarly to Snail and Twist, the activated AR can downregulate E-cadherin expression to promote the activation of epithelial-mesenchymal transition and tumor metastasis. |
| Targeting the androgen receptor with siRNA promotes prostate cancer metastasis through enhanced macrophage recruitment via CCL2/CCR2-induced STAT3 activation. | Increased CCL2 expression in prostate cancer (PCa) cells enhanced metastasis via macrophage recruitment. However, its linkage to androgen receptor (AR)-mediated PCa progression remains unclear. Here, we identified a previously unrecognized regulation: targeting AR with siRNA in PCa cells increased macrophage recruitment via CCL2 up-regulation, which might then result in enhancing PCa invasiveness. Molecular mechanism dissection revealed that targeting PCa AR with siRNA promoted PCa cell migration/invasion via CCL2-dependent STAT3 activation and epithelial-mesenchymal transition (EMT) pathways. Importantly, pharmacologic interruption of the CCL2/CCR2-STAT3 axis suppressed EMT and PCa cell migration, providing a new mechanism linking CCL2 and EMT. Simultaneously targeting PCa AR with siRNA and the CCL2/CCR2-STAT3 axis resulted in better suppression of PCa growth and metastasis in a xenograft PCa mouse model. Human PCa tissue microarray analysis suggests that increased CCL2 expression may be potentially associated with poor prognosis of PCa patients. Together, these results may provide a novel therapeutic approach to better battle PCa progression and metastasis at the castration resistant stage via the combination of targeting AR with siRNA and anti-CCL2/CCR2-STAT3 signalling.CI - (c) 2013 The Authors. Published by John Wiley and Sons, Ltd on behalf of EMBO. |
| Androgen receptor inducing bladder cancer progression by promoting an epithelial-mesenchymal transition. | The study investigated the role of androgen receptor (AR) as a potential target for the treatment of bladder cancer in regulating epithelial-mesenchymal transition or transformation (EMT). Cell proliferation, and migration capacity were determined in bladder cancer T24 cells treated with small interfering RNA directed against AR, and expression levels of E-cadherin, beta-catenin and N- cadherin were assessed using quantitative reverse transcription PCR (qRT-PCR). tumour cell growth was evaluated in vivo in T24 tumour-bearing nude mice receiving electroporation-assisted administration of anti-AR small interfering RNA. It was found that low AR expression decreased proliferation and migration of bladder cancer cells. In vivo experiments showed that silencing AR expression significantly suppressed AR-positive bladder tumour growth with decreased cell proliferation. Low AR level of T24 bladder cancer cells treated with dehydrotestosterone (DHT) decreased expression of E-cadherin, beta-catenin and N-cadherin expression, indicating a strong sensitivity to the EMT and In cells with low AR content, TGF-beta induced down-regulation of E-cadherin and beta-catenin. It is concluded that suppression of AR expression decreased the production of TGF-beta, inhibiting EMT and bladder cancer cell growth in vitro and in vivo, implying that its use might be a potential therapeutic target for the treatment of bladder cancer.CI - (c) 2013 Blackwell Verlag GmbH. |
| Activated androgen receptor promotes bladder cancer metastasis via Slug mediated epithelial-mesenchymal transition. | Androgen receptor (AR) has been indicated to be involved in bladder cancer progression. We showed androgen induced epithelial-mesenchymal transition (EMT) in AR-positive bladder cancer cells and promoted tumor metastasis in xenograft models. We subsequently identified that Slug was the mediator of EMT induced by androgen. Furthermore, upregulation of Slug was due to activation of Wnt/beta-catenin signaling in response to androgen. Finally, expression of AR showed strong correlation with loss of E-cadherin, higher expression of Slug and nuclear accumulation of beta-catenin in bladder tumor tissues. Taken together, our results suggest AR signaling promotes bladder cancer metastasis through Slug mediated EMT.CI - Copyright (c) 2014 Elsevier Ireland Ltd. All rights reserved. |
| Androgen receptor splice variants contribute to prostate cancer aggressiveness through induction of EMT and expression of stem cell marker genes. | BACKGROUND: The mechanism(s) by which androgen receptor (AR) splice variants contribute to castration-resistant prostate cancer (CRPC) is still lacking. METHODS: expressions of epithelial-to-mesenchymal transition (EMT) and stem cell markers were molecularly tested using prostate cancer (PCa) cells transfected with AR and AR3 (also known as AR-V7) plasmids or siRNA, and also cultured cells under androgen deprivation therapy (ADT) condition. Cell migration, clonogenicity, sphere-forming capacity was assessed using PCa cells under all experimental conditions and 3,3'-diindolylmethane (DIM; BR-DIM) treatment. Human PCa samples from BR-DIM untreated or treated patients were also used for assessing the expression of AR3 and stem cell markers. RESULTS: Overexpression of AR led to the induction of EMT phenotype, while overexpression of AR3 not only induced EMT but also led to the expression of stem cell signature genes. More importantly, ADT enhanced the expression of AR and AR3 concomitant with up-regulated expression of EMT and stem cell marker genes. Dihydrotestosterone (DHT) treatment decreased the expression of AR and AR3, and reversed the expression of these EMT and stem cell marker genes. BR-DIM administered to PCa patients prior to radical prostatectomy inhibited the expression of cancer stem cell markers consistent with inhibition of self-renewal of PCa cells after BR-DIM treatment. CONCLUSION: AR variants could contribute to PCa progression through induction of EMT and acquisition of stem cell characteristics, which could be attenuated by BR-DIM, suggesting that BR-DIM could become a promising agent for the prevention of CRPC and/or for the treatment of PCa.CI - (c) 2014 Wiley Periodicals, Inc. |
| The androgen receptor plays a suppressive role in epithelial- mesenchymal transition of human prostate cancer stem progenitor cells. | BACKGROUND: To investigate the roles of androgen receptor (AR) in epithelial- mesenchymal transition (EMT) in human prostate cancer stem progenitor (S/P) cells isolated from LNCaP cell line. METHODS: The S/P cells were obtained from LNCaP cell line through florescence-activated cell sorting (FACS). AR was overexpressed in S/P cells through lentivirus. Western blot assay was used to detect the EMT markers expression, such as E Cadherin, N Cadherin, Vimentin and Snail. MTT assay, soft agar colony formation assay, sphere formation assay and migration assay were used to investigate AR's roles in EMT of S/P cells. Cell signaling pathways associated with proliferation and apoptosis of S/P cells were detected simultaneously. And S/P cells were treated with in vitro combinatory use of LY 294002 (inhibitor of AKT signaling molecules) with gamma-TT and/or 5-AZA. RESULTS: Our data showed that S/P cells from LNCaP had high EMT markers expression, more tumorigenesis and strong migration ability. And in S/P cells overexpressed with AR, the expression of EMT markers decreased. In addition, these cells had less proliferation ability, tumorigenesis ability, self-renewal and migration ability. At the same time, targeting S/P cells with AKT signaling pathway inhibitor LY29004 and gamma-TT and/or 5-AZA could inhibit S/P cell's proliferation and tumorigenesis. CONCLUSIONS: Our data suggest that AR played a negative role in EMT of PCa S/P cells, by regulating AKT cell signaling pathway, which could be a new strategy to treat castration resistant prostate cancer (CRPC). |
| The Epidemiological, Mechanistic and Potential Clinical Role of Androgen Receptor (AR) in Urothelial Carcinoma. | The androgen receptor (AR) is a ligand-inducible transcription factor that regulates target gene expression. Androgen signaling has been considered a putative explanation for gender differences in urothelial carcinoma (UC) incidence. In the absence of established risk factors, men still experience a threefold risk of UC as compared to women. Multiple investigations to modulate the AR have been performed with in vitro and in vivo models of UC. Down-regulation of the AR has been shown to inhibit UC growth through increased apoptosis, decreased cell proliferation, and decreased cell migration. AR activation up-regulates EGFR and HER2/neu expression contributing to UC progression. UC is more easily induced in male than female models and the incidence of chemically-induced UC is decreased by castration and the addition of estrogens; it is increased by testosterone. epithelial to mesenchymal transition (EMT) has been postulated to be androgen-driven in UC and affects chemotherapy sensitivity. UC has not achieved the same therapeutic advances that have been seen in other tumor types in recent years. Androgen-driven events may account for some of the treatment resistance seen in this tumor type. Novel agents which disrupt androgen synthesis and/or AR signaling are in development and some (abiraterone, enzalutamide) are approved for advanced prostate cancer. Biomarker AR-driven clinical trials of highly effective anti-androgen therapy (HEAT) agents in UC present a promising picture. |
| Androgen receptor inhibits epithelial-mesenchymal transition, migration, and invasion of PC-3 prostate cancer cells. | Bone metastasis is very common in prostate cancer (PCa) and causes severe pain. PC-3 is an androgen receptor (AR)-negative PCa cell line with high metastatic potential established from PCa bone metastasis. We observed that re-expression of AR, which is located in the cytoplasm in the absence of androgen, suppressed cell motility, migration, and invasion of PC-3 cells as determined by wound healing assay and transwell assay. Micro-Western Array and Western blotting analysis indicated that re-expression of AR increased APC, Akt2, Akt3, PI3K p85, phospho-PI3K p85 Tyr458, PI3K p85, and E-cadherin but decreased GSK-3beta, phospho-GSK-3beta Ser9, phospho-mTOR Ser2448, Skp2, NF-kappaB p50, Slug, N-cadherin, beta-catenin, vimentin, MMP-9, and Snail. Migration and invasion of PC-3 and PC-3(AR) cells were promoted by EGF or IGF-1 but were suppressed by Casodex. Re-expression of AR reduced the activity of MMP-2 and MMP-9 in PC-3 cells. Our observations suggested that re-expressing AR suppresses migration and invasion of PC-3 cells via regulation of EMT marker proteins and MMP activity.CI - Copyright (c) 2015 Elsevier Ireland Ltd. All rights reserved. |
| Extracellular vesicles released by mesenchymal-like prostate carcinoma cells modulate EMT state of recipient epithelial-like carcinoma cells through regulation of AR signaling. | Extracellular vesicles released from cancer cells may play an important role in cancer progression by shuttling oncogenic information into recipient cells. However, our knowledge is still fragmentary and there remain numerous questions regarding the mechanisms at play and the functional consequences of these interactions. We have recently established a mesenchymal-like prostate cancer cell line (22Rv1/CR-1; Mes-PCa). In this study, we assessed the effects of the extracellular vesicles released by these cells on recipient androgen-dependent epithelial VCaP prostate cancer cells. Mes-PCa derived vesicles were found to promote mesenchymal features in the recipient epithelial-like prostate cancer cells. This transformation was accompanied by a modulation of androgen receptor signaling and activation of TGFbeta signaling pathway. Moreover, recipient cells acquiring mesenchymal traits displayed enhanced migratory and invasive features as well as increased resistance to the androgen receptor antagonist, enzalutamide. Our results suggest a previously unappreciated role for Mes-PCa secreted vesicles in cancer promotion by transferring cell-mediated signals and promoting phenotypic changes in recipient prostate cancer cells.CI - Copyright (c) 2017 Elsevier B.V. All rights reserved. |
| betaKlotho inhibits androgen/androgen receptorassociated epithelialmesenchymal transition in prostate cancer through inactivation of ERK1/2 signaling. | The epithelialmesenchymal transition (EMT) is reported to have intimate crosstalk with androgen receptor (AR) signaling in prostate cancer (PCa) and is known to be responsible for castration resistance. Fibroblast growth factor/receptor (FGF/FGFR) signaling is also involved in tumor progression and EMT in multiple tissues. Several studies have investigated the role of betaKlotho, an FGF/FGFR signaling coreceptor in tumorigenesis. However, its role in PCa remains unknown. In the present study, the role of androgen in the EMT of PCa cells was examined by western blotting. The expression of betaKlotho was examined in prostate cells and PCa tissues by western blotting and immunohistochemistry, respectively. The biological role of betaKlotho was revealed by a series of functional in vitro and in vivo studies. We determined that betaKlotho expression was significantly decreased in PCa tissues compared with benign prostatic hyperplasia (BPH) tissues, and low betaKlotho expression was associated with a high Gleason score of PCa. betaKlotho overexpression inhibited the viability, migration, and androgen/ARassociated EMT of PCa cells through the inactivation of ERK1/2 signaling. Notably, betaKlotho overexpression inhibited prostate tumor growth and EMT in vivo. Knockdown of betaKlotho produced the opposite effects. In conclusion, betaKlotho inhibits EMT and plays a tumorsuppressive role in PCa, linking FGF/FGFR/betaKlotho signaling to the regulation of PCa progression. |
| Elevation of androgen receptor promotes prostate cancer metastasis by induction of epithelial-mesenchymal transition and reduction of KAT5. | Androgen receptor (AR), an androgen-activated transcription factor, belongs to the nuclear receptor superfamily. AR plays an important role in the development and progression of prostate cancer (PCa). However, the role of AR in PCa metastasis is not fully understood. To investigate the role of AR in PCa metastasis, we examined AR expression level in primary and metastatic PCa by analyzing gene array data of 378 primary prostate tumors and 120 metastatic prostate tumors from Oncomine, as well as carrying out immunohistochemical (IHC) staining of 56 prostate cancer samples. expression of mRNA and protein of AR as well as its target gene prostate-specific antigen (PSA) was much higher in metastatic prostate tumors than in primary prostate tumors. Knockdown of AR with siRNA or treating with anti-androgen Casodex reduced migration and invasion ability of C4-2B PCa cells. Knockdown of AR increased protein expression of E-cadherin and AR coregulator KAT5 but reduced expression of epithelial-mesenchymal transition (EMT) marker proteins Slug, Snail, MMP-2, vimentin, and beta-catenin. Knockdown of KAT5 increased migration of C4-2B cells, whereas overexpression of KAT5 suppressed cell migration. KAT5 knockdown rescues the suppressive effect of AR knockdown on migration of C4-2B cells. Gene expression level of AR and KAT5 showed a negative correlation. PCa patients with higher AR expression or lower KAT5 expression correlated with shorter recurrence-free survival. Our study suggested that elevation of AR expression and AR signaling in prostate tumors promotes PCa metastasis by induction of EMT and reduction of KAT5.CI - (c) 2018 The Authors. cancer Science published by John Wiley & Sons Australia, Ltd on behalf of Japanese cancer Association. |