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Evaluating the Effectiveness of Cancer Drug Sensitization In Vitro and In Vivo
Published on: February 6, 2015
SOX2 knockdown with siRNA reverses cisplatin resistance in NSCLC by regulating APE1 signaling
Tai-Yu Chen1, Ji Zhou2, Peng-Cheng Li3
1Clinical Medical College of Chengdu Medical College, Chengdu, 610500, China.
Abstract:
SOX2 is related to drug resistance in many types of cancer, including lung cancer. Herein, we investigated the role of SOX2 and its regulatory signaling in cisplatin-treated non-small-cell lung cancer (NSCLC). The effects of SOX2 on cell viability, proliferation, and apoptosis were evaluated in vitro. Western blotting, real-time quantitative PCR, immunohistochemistry, and luciferase reporter assays were used to investigate the underlying mechanism. Kaplan-Meier survival analysis and the log-rank test were used to assess the relationship between SOX2 expression and patient survival. A549/CDDP cells had marked resistance to cisplatin and stronger colony formation ability than A549 cells. The expression of SOX2 protein or mRNA in A549/CDDP was higher than that in A549. Knockdown of SOX2 in A549/CDDP-induced apoptosis by inhibiting colony formation and decreasing viability, but overexpression of SOX2 reversed these effects. Interestingly, Genomatix software predicted that the APE1 promoter has some SOX2 binding sites, while the SOX2 promoter has no APE1 binding sites. Furthermore, luciferase reporter assays proved that SOX2 could bind the promoter of APE1 in 293T cells. We further verified that SOX2 expression was not affected by shAPE1 in A549/CDDP. As expected, colony formation was obviously inhibited and apoptosis was strongly enhanced in A549/CDDP treated with SOX2 siSOX2 alone or combined with CDDP compared with control cells. Meaningfully, patients with low expression of SOX2, and even including its regulating APE1, survived longer than those with high expression of SOX2, and APE1. siSOX2 overcomes cisplatin resistance by regulating APE1 signaling, providing a new target for overcoming cisplatin resistance in NSCLC.
Insights
SOX2 promotes cisplatin resistance in non-small cell lung cancer (NSCLC) by regulating APE1 signaling. Targeting SOX2 with siSOX2 can overcome this resistance, offering a new therapeutic strategy for NSCLC patients.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- SOX2 is implicated in drug resistance across various cancers, including lung cancer.
- Cisplatin is a common chemotherapeutic agent, but resistance limits its efficacy in non-small cell lung cancer (NSCLC).
Purpose of the Study:
- To investigate the role of SOX2 and its regulatory pathways in cisplatin resistance in NSCLC.
- To explore SOX2 as a potential therapeutic target for overcoming cisplatin resistance.
Main Methods:
- In vitro evaluation of SOX2 effects on cell viability, proliferation, and apoptosis.
- Western blotting, qPCR, immunohistochemistry, and luciferase reporter assays to elucidate mechanisms.
- Kaplan-Meier survival analysis to correlate SOX2 expression with patient outcomes.
Main Results:
- Cisplatin-resistant NSCLC cells (A549/CDDP) exhibited higher SOX2 expression and colony formation.
- SOX2 knockdown induced apoptosis and reduced viability in resistant cells; overexpression reversed these effects.
- SOX2 directly binds to the APE1 promoter, and SOX2 knockdown enhanced apoptosis and overcame cisplatin resistance, correlating with improved patient survival.
Conclusions:
- SOX2 plays a critical role in conferring cisplatin resistance in NSCLC by regulating APE1 signaling.
- Targeting SOX2, particularly with siSOX2, is a promising strategy to overcome cisplatin resistance in NSCLC.
- SOX2 and APE1 expression levels can serve as prognostic markers for NSCLC patient survival.

