| Literature DB >> 25202359 |
Akinobu Hayashi1, Yoshifumi S Hirokawa1, Michiko Kagaya1, Masaya Fujiwara1, Misao Yoneda2, Kazuki Kanayama1, Katsunori Uchida1, Kenichiro Ishii1, Taizo Shiraishi1.
Abstract
Transforming growth factor β1 (TGFβ1) regulates a variety of cellular functions, including cell growth, apoptosis and differentiation. The aim of the current study was to investigate the alterations of phenotypic events in the long-term exposure of prostate cancer (PCa) cells to TGFβ1 and its effect on macrophage-differentiated cells. The PCa cell line, PC-3, and the subclone, M1, were exposed to TGFβ1 for short- or long-term periods. TGFβ1 signaling was assessed by Smad3 phosphorylation, and non-canonical signaling was analyzed by quantitative polymerase chain reaction-based regulatory gene expression profiles. TGFβ1-exposed PCa cells were also co-cultured with phorbol 12-myristate 13-acetate (PMA)-treated THP-1 macrophages as a model of the tumor microenvironment. The phosphorylation of Smad3 in the PCa cells with long-term exposure was lower than that in the PCa cells with short-term exposure. Interleukin-6 mRNA expression in the PMA-treated THP-1 macrophages was significantly downregulated by co-culture with the PCa cells with long-term exposure. Cyclooxygenase-2 expression in the long-term TGFβ1-exposed PCa cells was lower than that in the control PCa cells, and the production of prostaglandin E2 (PGE2) in the long-term TGFβ1-exposed PCa cells was also significantly lower. The results of the current study demonstrated that the long-term TGFβ1 exposure of PCa cells induces phenotypic changes, including the downregulation of PGE2 production. This indicates that prolonged TGFβ-exposed PCa cells may change the cytokine production of macrophages in the tumor microenvironment.Entities:
Keywords: THP-1 macrophage; microenvironment; prostate cancer; transforming growth factor β1
Year: 2014 PMID: 25202359 PMCID: PMC4156195 DOI: 10.3892/ol.2014.2402
Source DB: PubMed Journal: Oncol Lett ISSN: 1792-1074 Impact factor: 2.967
Figure 1Smad3 phosphorylation status following short- and long-term TGFβ1 exposure and TGFβ1 target gene promoter activity. (A) Western blot analysis of P-Smad3 in short-term TGFβ1- or vehicle-exposed PC3 and M1 cell lines. Cell line designation of TGFβ1 or vehicle short-term exposure is described in the Materials and methods section. (B, upper) Western blot analysis of P-Smad3 in long-term TGFβ1- or vehicle-exposed cells. (B, lower) Protein expression with TGFβ types IR and IIR following TGFβ1 long-term exposure. (C and D) Smad3 target gene promoter activity was measured using the 3TP-lux luciferase reporter plasmid. Data are presented as the mean ± standard deviation of triplicate assays and represent two independent experiments. Student’s t-test was used to calculate statistical significances. *P<0.05. TGFβ1, transforming growth factor β1; P-Smad3, phosphorylated Smad3; t-Smad3, total Smad3; type IR, type I receptor; type IIR, type II receptor.
Figure 2Cytokine production from THP-1 macrophages co-cultured with short- and long-term TGFβ1 exposure. Transcription levels of each cytokine from THP-1 macrophages with short- and long-term TGFβ1 exposure were measured by quantitative polymerase chain reaction. Relative ratios are exhibited as fold-changes compared with vehicle exposure. Data are presented as the mean ±standard deviation of triplicate assays and represent three independent experiments. Student’s t-test was used to calculate statistical significances. *P<0.05 vs. vehicle exposure. TGFβ, transforming growth factor β.
qPCR analysis of human signal transduction molecules.
| Pathway | Gene | Fold-change of TbL-PC3 to CoL-PC3 |
|---|---|---|
| TGFβ | CDKN1A (p21) | 1.670 |
| CDKN1B (p27) | 0.835 | |
| CDKN2A (p16) | 1.558 | |
| CDKN2B (p15) | 0.727 | |
| Phospholipase C | FOS | 0.363 |
| ICAM1 | 0.959 | |
| NOS2A | 0.389 | |
| COX2 | 0.257 |
Fold expression changes of TbL-PC3 to CoL-PC3 cells were calculated according to the instructions of the RT2Profiler PCR array. COX-2, cyclooxygenase-2; TGFβ, transforming growth factor β; qPCR, quantitative polymerase chain reaction.
Figure 3COX2 expression and PGE2 production by prostate cancer cells following short- and long-term exposure to transforming growth factor β1. (A) Cell lysates from each cell line were analyzed by western blot analysis using COX-2 antibody. (B) Each cell was treated with 10 μM arachidonic acid for 2 h, and PGE2 in medium was measured by an enzyme immunoassay. PGE2 levels are expressed as equal numbers of each cell type. Data are presented as the mean ± standard deviation of triplicate assays and represent two independent experiments. Student’s t-test was used to calculate statistical significances. *P<0.05 vs. vehicle exposure (CoL-PC3 and CoL-M1). COX-2, cyclooxygenase-2; PGE2, prostaglandin E2.