Related Experiment Video
Updated: Jul 10, 2025

Immunofluorescence Imaging of DNA Damage and Repair Foci in Human Colon Cancer Cells
Published on: June 9, 2020
Modulation of SLFN11 induces changes in DNA Damage response in breast cancer
Christophe Michel Raynaud1, Eiman I Ahmed2,3, Ayesha Jabeen2
1Tumor Biology and Immunology Lab, Research Branch, Sidra Medicine, Doha, Qatar. raynaud.chris@gmail.com.
Background:
Lack of Schlafen family member 11 (SLFN11) expression has been recently identified as a dominant genomic determinant of response to DNA damaging agents in numerous cancer types. Thus, several strategies aimed at increasing SLFN11 are explored to restore chemosensitivity of refractory cancers. In this study, we examined various approaches to elevate SLFN11 expression in breast cancer cellular models and confirmed a corresponding increase in chemosensitivity with using the most successful efficient one. As oncogenic transcriptomic downregulation is often driven by methylation of the promotor region, we explore the demethylation effect of 5-aza-2'-deoxycytidine (decitabine), on the SLFN11 gene. Since SLFN11 has been reported as an interferon inducible gene, and interferon is secreted during an active anti-tumor immune response, we investigated the in vitro effect of IFN-γ on SLFN11 expression in breast cancer cell lines. As a secondary approach to pick up cross talk between immune cells and SLFN11 expression we used indirect co-culture of breast cancer cells with activated PBMCs and evaluated if this can drive SLFN11 upregulation. Finally, as a definitive and specific way to modulate SLFN11 expression we implemented SLFN11 dCas9 (dead CRISPR associated protein 9) systems to specifically increase or decrease SLFN11 expression.
Results:
After confirming the previously reported correlation between methylation of SLFN11 promoter and its expression across multiple cell lines, we showed in-vitro that decitabine and IFN-γ could increase moderately the expression of SLFN11 in both BT-549 and T47D cell lines. The use of a CRISPR-dCas9 UNISAM and KRAB system could increase or decrease SLFN11 expression significantly (up to fivefold), stably and specifically in BT-549 and T47D cancer cell lines. We then used the modified cell lines to quantify the alteration in chemo sensitivity of those cells to treatment with DNA Damaging Agents (DDAs) such as Cisplatin and Epirubicin or DNA Damage Response (DDRs) drugs like Olaparib. RNAseq was used to elucidate the mechanisms of action affected by the alteration in SLFN11 expression. In cell lines with robust SLFN11 promoter methylation such as MDA-MB-231, no SLFN11 expression could be induced by any approach.
Conclusion:
To our knowledge this is the first report of the stable non-lethal increase of SLFN11 expression in a cancer cell line. Our results show that induction of SLFN11 expression can enhance DDA and DDR sensitivity in breast cancer cells and dCas9 systems may represent a novel approach to increase SLFN11 and achieve higher sensitivity to chemotherapeutic agents, improving outcome or decreasing required drug concentrations. SLFN11-targeting therapies might be explored pre-clinically to develop personalized approaches.
Insights
Schlafen family member 11 (SLFN11) expression predicts response to DNA damaging agents. This study demonstrates that increasing SLFN11 via CRISPR-dCas9 enhances breast cancer sensitivity to chemotherapy, offering a novel therapeutic strategy.
Area of Science:
- Cancer Biology
- Genomics
- Molecular Therapeutics
Background:
- Schlafen family member 11 (SLFN11) expression is a key predictor of response to DNA damaging agents in various cancers.
- Restoring SLFN11 expression is a strategy to overcome resistance in refractory cancers.
- Breast cancer models were used to explore methods for increasing SLFN11.
Purpose of the Study:
- To investigate methods for increasing SLFN11 expression in breast cancer cells.
- To evaluate the impact of elevated SLFN11 on chemosensitivity.
- To explore the potential of dCas9 systems for modulating SLFN11 expression and chemosensitivity.
Main Methods:
- Investigated decitabine (a demethylating agent) and IFN-γ for their effects on SLFN11 expression.
- Employed SLFN11 dCas9 systems (UNISAM and KRAB) for specific and stable modulation of SLFN11 levels.
- Assessed changes in chemosensitivity to DNA damaging agents (e.g., Cisplatin, Epirubicin) and DNA damage response inhibitors (e.g., Olaparib).
- Utilized RNA sequencing to understand the mechanisms underlying SLFN11 modulation.
Main Results:
- Decitabine and IFN-γ moderately increased SLFN11 expression in BT-549 and T47D cell lines.
- CRISPR-dCas9 systems significantly increased or decreased SLFN11 expression (up to fivefold) stably and specifically.
- Increased SLFN11 expression enhanced sensitivity to DNA damaging agents and DDR inhibitors.
- No SLFN11 induction was observed in cell lines with robust promoter methylation (e.g., MDA-MB-231).
Conclusions:
- This study reports the first stable, non-lethal increase of SLFN11 expression in cancer cell lines.
- Elevating SLFN11 expression enhances sensitivity to chemotherapeutic agents in breast cancer.
- CRISPR-dCas9 systems offer a novel approach to increase SLFN11, potentially improving patient outcomes and reducing drug dosages.
- SLFN11-targeting therapies warrant further preclinical investigation for personalized cancer treatment.
Related Concept Videos
DNA Damage can Stall the Cell Cycle
Abnormal Proliferation
The Intrinsic Apoptotic Pathway
Epigenetic Regulation
X-chromosome...

