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CRISPR-Mediated Reactivation of DKK3 Expression Attenuates TGF-β Signaling in Prostate Cancer
Hoda Kardooni1, Estela Gonzalez-Gualda2, Emmanouil Stylianakis3
1Department of Surgery and Cancer, Imperial College London, London W12 0NN, UK. h.kardooni@imperial.ac.uk.
Abstract:
The DKK3 gene encodes a secreted protein, Dkk-3, that inhibits prostate tumor growth and metastasis. DKK3 is downregulated by promoter methylation in many types of cancer, including prostate cancer. Gene silencing studies have shown that Dkk-3 maintains normal prostate epithelial cell homeostasis by limiting TGF-β/Smad signaling. While ectopic expression of Dkk-3 leads to prostate cancer cell apoptosis, it is unclear if Dkk-3 has a physiological role in cancer cells. Here, we show that treatment of PC3 prostate cancer cells with the DNA methyltransferase (DNMT) inhibitor decitabine demethylates the DKK3 promoter, induces DKK3 expression, and inhibits TGF-β/Smad-dependent transcriptional activity. Direct induction of DKK3 expression using CRISPR-dCas9-VPR also inhibited TGF-β/Smad-dependent transcription and attenuated PC3 cell migration and proliferation. These effects were not observed in C4-2B cells, which do not respond to TGF-β. TGF-β signals can regulate gene expression directly via SMAD proteins and indirectly by increasing DNMT expression, leading to promoter methylation. Analysis of genes downregulated by promoter methylation and predicted to be regulated by TGF-β found that DKK3 induction increased expression of PTGS2, which encodes cyclooxygenase-2. Together, these observations provide support for using CRISPR-mediated induction of DKK3 as a potential therapeutic approach for prostate cancer and highlight complexities in Dkk-3 regulation of TGF-β signaling.
Insights
DKK3 protein inhibits prostate cancer growth. Reactivating DKK3 expression via DNA demethylation or CRISPR gene editing reduced cancer cell proliferation and migration, suggesting a therapeutic strategy.
Area of Science:
- Oncology
- Molecular Biology
- Epigenetics
Background:
- DKK3 protein inhibits prostate tumor growth and metastasis.
- DKK3 is often downregulated in cancer due to promoter methylation.
- Dkk-3 maintains prostate epithelial cell homeostasis by regulating TGF-β/Smad signaling.
Purpose of the Study:
- To investigate the physiological role of DKK3 in prostate cancer cells.
- To explore therapeutic strategies for reactivating DKK3 expression in prostate cancer.
Main Methods:
- Treatment of PC3 prostate cancer cells with decitabine (a DNMT inhibitor).
- Direct induction of DKK3 expression using CRISPR-dCas9-VPR.
- Analysis of TGF-β/Smad signaling pathway activity.
- Assessment of cell migration and proliferation.
- Analysis of gene expression changes, including PTGS2.
Main Results:
- Decitabine treatment demethylated the DKK3 promoter, induced DKK3 expression, and inhibited TGF-β/Smad signaling in PC3 cells.
- CRISPR-mediated DKK3 induction also inhibited TGF-β/Smad signaling and reduced PC3 cell migration and proliferation.
- These effects were not observed in TGF-β unresponsive C4-2B cells.
- DKK3 induction led to increased expression of PTGS2 (cyclooxygenase-2).
Conclusions:
- DKK3 plays a physiological role in inhibiting prostate cancer cell progression.
- CRISPR-mediated DKK3 induction is a potential therapeutic approach for prostate cancer.
- Complex interactions exist between Dkk-3, TGF-β signaling, and epigenetic regulation in prostate cancer.
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