ALDH1A1 drives prostate cancer metastases and radioresistance by interplay with AR- and RAR-dependent transcription
Ielizaveta Gorodetska1, Anne Offermann2, Jakob Püschel1
1OncoRay-National Center for Radiation Research in Oncology, Faculty of Medicine and University Hospital Carl Gustav Carus, Technische Universität Dresden and Helmholtz-Zentrum Dresden-Rossendorf, Dresden, Germany.
Abstract:
Rationale: Current therapies for metastatic osseous disease frequently fail to provide a durable treatment response. To date, there are only limited therapeutic options for metastatic prostate cancer, the mechanisms that drive the survival of metastasis-initiating cells are poorly characterized, and reliable prognostic markers are missing. A high aldehyde dehydrogenase (ALDH) activity has been long considered a marker of cancer stem cells (CSC). Our study characterized a differential role of ALDH1A1 and ALDH1A3 genes as regulators of prostate cancer progression and metastatic growth. Methods: By genetic silencing of ALDH1A1 and ALDH1A3 in vitro, in xenografted zebrafish and murine models, and by comparative immunohistochemical analyses of benign, primary tumor, and metastatic specimens from patients with prostate cancer, we demonstrated that ALDH1A1 and ALDH1A3 maintain the CSC phenotype and radioresistance and regulate bone metastasis-initiating cells. We have validated ALDH1A1 and ALDH1A3 as potential biomarkers of clinical outcomes in the independent cohorts of patients with PCa. Furthermore, by RNAseq, chromatin immunoprecipitation (ChIP), and biostatistics analyses, we suggested the molecular mechanisms explaining the role of ALDH1A1 in PCa progression. Results: We found that aldehyde dehydrogenase protein ALDH1A1 positively regulates tumor cell survival in circulation, extravasation, and metastatic dissemination, whereas ALDH1A3 plays the opposite role. ALDH1A1 and ALDH1A3 are differentially expressed in metastatic tumors of patients with prostate cancer, and their expression levels oppositely correlate with clinical outcomes. Prostate cancer progression is associated with the increasing interplay of ALDH1A1 with androgen receptor (AR) and retinoid receptor (RAR) transcriptional programs. Polo-like kinase 3 (PLK3) was identified as a transcriptional target oppositely regulated by ALDH1A1 and ALDH1A3 genes in RAR and AR-dependent manner. PLK3 contributes to the control of prostate cancer cell proliferation, migration, DNA repair, and radioresistance. ALDH1A1 gain in prostate cancer bone metastases is associated with high PLK3 expression. Conclusion: This report provides the first evidence that ALDH1A1 and PLK3 could serve as biomarkers to predict metastatic dissemination and radiotherapy resistance in patients with prostate cancer and could be potential therapeutic targets to eliminate metastasis-initiating and radioresistant tumor cell populations.
Insights
Aldehyde dehydrogenase 1 family member A1 (ALDH1A1) promotes prostate cancer metastasis and radioresistance, while ALDH1A3 has an opposite effect. ALDH1A1 and Polo-like kinase 3 (PLK3) may predict outcomes and serve as therapeutic targets.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Stem Cells
Background:
- Metastatic prostate cancer lacks durable treatment options and effective prognostic markers.
- Cancer stem cell (CSC) markers, like high aldehyde dehydrogenase (ALDH) activity, are crucial for understanding metastasis.
- The specific roles of ALDH1A1 and ALDH1A3 in prostate cancer progression are not fully understood.
Purpose of the Study:
- To investigate the distinct roles of ALDH1A1 and ALDH1A3 in prostate cancer progression and metastasis.
- To identify ALDH1A1 and ALDH1A3 as potential biomarkers for clinical outcomes in prostate cancer patients.
- To elucidate the molecular mechanisms underlying ALDH1A1's role in prostate cancer.
Main Methods:
- Genetic silencing of ALDH1A1 and ALDH1A3 in vitro and in vivo (zebrafish, murine models).
- Comparative immunohistochemical analysis of patient tumor and metastatic specimens.
- RNA sequencing, chromatin immunoprecipitation (ChIP), and biostatistics to identify molecular pathways.
Main Results:
- ALDH1A1 promotes tumor cell survival, circulation, extravasation, and bone metastasis, while ALDH1A3 has an opposing function.
- Differential expression of ALDH1A1 and ALDH1A3 correlates with clinical outcomes in prostate cancer patients.
- ALDH1A1 interacts with androgen receptor (AR) and retinoid receptor (RAR) pathways, regulating Polo-like kinase 3 (PLK3) expression, which impacts proliferation, migration, DNA repair, and radioresistance.
Conclusions:
- ALDH1A1 and PLK3 are potential biomarkers for predicting metastatic dissemination and radiotherapy resistance in prostate cancer.
- ALDH1A1 and PLK3 represent potential therapeutic targets for eliminating metastasis-initiating and radioresistant prostate cancer cells.
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