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Sequencing Small Non-coding RNA from Formalin-fixed Tissues and Serum-derived Exosomes from Castration-resistant Prostate Cancer Patients
Published on: November 19, 2019
Fibroblast-derived exosomal microRNA regulates NKX3-1 expression in androgen-sensitive, androgen receptor-dependent
Chise Matsuda1, Kenichiro Ishii1,2, Yasuhisa Nakagawa3
1Department of Oncologic Pathology, Mie University Graduate School of Medicine, Mie, Japan.
Abstract:
Androgen deprivation therapy (ADT) targeting androgen production and androgen receptor (AR) signaling is the primary antihormonal therapy in the treatment of advanced prostate cancer (PCa). However, no clinically established molecular biomarkers have been identified to predict the effectiveness of ADT before starting ADT. The tumor microenvironment of PCa contains fibroblasts that regulate PCa progression by producing multiple soluble factors. We have previously reported that AR-activating factor-secreted fibroblasts increase the responsiveness of androgen-sensitive, AR-dependent PCa cells to ADT. Thus, we hypothesized that fibroblast-derived soluble factors may affect cancer cell differentiation by regulating cancer-related gene expression in PCa cells and that the biochemical characteristics of fibroblasts may be used to predict the effectiveness of ADT. Here, we investigated the effects of normal fibroblasts (PrSC cells) and three PCa patient-derived fibroblast lines (pcPrF-M5, -M28, and -M31 cells) on the expression of cancer-related genes in androgen-sensitive, AR-dependent human PCa cells (LNCaP cells) and three sublines showing different androgen sensitivities and AR dependencies. The mRNA expression of the tumor suppressor gene NKX3-1 in LNCaP cells and E9 cells (which show low androgen sensitivity and AR dependency) was significantly increased by treatment with conditioned media from PrSC and pcPrF-M5 cells but not from pcPrF-M28 and pcPrF-M31 cells. Notably, no upregulation of NKX3-1 was observed in F10 cells (AR-V7-expressing, AR-independent cells with low androgen sensitivity) and AIDL cells (androgen-insensitive, AR-independent cells). Among 81 common fibroblast-derived exosomal microRNAs that showed 0.5-fold lower expression in pcPrF-M28 and pcPrF-M31 cells than in PrSC and pcPrF-M5 cells, miR-449c-3p and miR-3121-3p were found to target NKX3-1. In only LNCaP cells, the NKX3-1 mRNA expression was significantly increased by transfection of an miR-3121-3p mimic but not that of the miR-449c-3p mimic. Thus, fibroblast-derived exosomal miR-3121-3p may be involved in preventing the oncogenic dedifferentiation of PCa cells by targeting NKX3-1 in androgen-sensitive, AR-dependent PCa cells.
Insights
Fibroblasts in the prostate cancer tumor microenvironment influence treatment response. Fibroblast-derived exosomal miR-3121-3p targets NKX3-1, potentially preventing cancer cell dedifferentiation and improving androgen deprivation therapy (ADT) effectiveness.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Androgen deprivation therapy (ADT) is a primary treatment for advanced prostate cancer (PCa).
- Predictive biomarkers for ADT effectiveness are lacking.
- Tumor microenvironment fibroblasts influence PCa progression and treatment response.
Purpose of the Study:
- To investigate the role of fibroblast-derived soluble factors in regulating cancer-related gene expression in PCa cells.
- To explore the potential of fibroblast biochemical characteristics as predictors of ADT effectiveness.
- To identify specific molecular mechanisms by which fibroblasts impact PCa cell differentiation and ADT response.
Main Methods:
- Co-culture of human PCa cells (LNCaP and sublines) with normal fibroblasts (PrSC) and patient-derived fibroblasts (pcPrF).
- Analysis of cancer-related gene expression (NKX3-1) using mRNA expression.
- Identification and functional analysis of fibroblast-derived exosomal microRNAs (miRNAs) targeting NKX3-1.
Main Results:
- Conditioned media from PrSC and pcPrF-M5 cells increased NKX3-1 mRNA expression in LNCaP and E9 cells.
- NKX3-1 upregulation was not observed in AR-independent PCa cell lines (F10, AIDL).
- Fibroblast-derived exosomal miR-3121-3p was identified as a potential regulator of NKX3-1 in androgen-sensitive PCa cells.
Conclusions:
- Fibroblast-derived exosomal miR-3121-3p may play a role in maintaining PCa cell differentiation by targeting NKX3-1.
- This mechanism could be crucial for the effectiveness of ADT in androgen-sensitive, AR-dependent PCa.
- Further research into fibroblast-derived factors may yield novel biomarkers for predicting ADT response.
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