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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
Targeting RPS6KC1 to overcome enzalutamide resistance in prostate cancer
Fu-Hao Ji1,2, Yu-Hang Qian3,4, Xiu-Chen Guo4
1Department of Urology, Ren-Ji Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, 200001, People's Republic of China.
Abstract:
The androgen receptor signaling inhibitor enzalutamide (Enz) is one the primary therapeutic drugs for advanced prostate cancer (PCa). Nevertheless, most of patients ultimately develop resistance to Enz. Through an integrated analysis of CRISPR genome-wide and kinome-wide screens, coupled with observations of elevated expression levels in Enz-resistant cell lines and PCa tumor tissues, our study identified RPS6KC1 as a novel essential gene implicated in Enz resistance. Mechanistically, our research indicates that the Warburg effect induces H3K18 lactylation, which regulates the expression of RPS6KC1 via the transcription factor P65. Elevated expression of RPS6KC1 was found to recruit PRDX3 to the mitochondria, thereby mitigating ferroptosis. These findings suggest that the H3K18la/NF-κB/RPS6KC1/PRDX3 axis is important for the development of resistance to Enz. Our results suggest that the combination of Enz with targeted RPS6KC1 inhibition or a ferroptosis inducer may represent a promising therapeutic strategy to overcome Enz resistance.
Insights
Researchers identified RPS6KC1 as a key driver of enzalutamide resistance in prostate cancer (PCa). Targeting this pathway may overcome treatment resistance.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Enzalutamide (Enz) is a primary therapy for advanced prostate cancer (PCa).
- Most patients develop resistance to Enz, necessitating new therapeutic strategies.
- Understanding the mechanisms of Enzalutamide resistance is crucial for improving PCa treatment outcomes.
Purpose of the Study:
- To identify novel genes and pathways involved in enzalutamide resistance in prostate cancer.
- To elucidate the molecular mechanisms by which resistance develops.
- To explore potential therapeutic strategies to overcome enzalutamide resistance.
Main Methods:
- Integrated analysis of CRISPR genome-wide and kinome-wide screens.
- Expression analysis in enzalutamide-resistant cell lines and PCa tumor tissues.
- Investigation of the H3K18 lactylation, NF-κB, RPS6KC1, and PRDX3 axis.
Main Results:
- RPS6KC1 was identified as a novel essential gene conferring enzalutamide resistance.
- The Warburg effect-induced H3K18 lactylation regulates RPS6KC1 expression via P65 (NF-κB).
- RPS6KC1 recruits PRDX3 to mitochondria, inhibiting ferroptosis and promoting resistance.
Conclusions:
- The H3K18la/NF-κB/RPS6KC1/PRDX3 axis is critical for enzalutamide resistance in PCa.
- Targeting RPS6KC1 or inducing ferroptosis alongside enzalutamide may overcome resistance.
- This study offers a promising therapeutic strategy for advanced prostate cancer patients resistant to enzalutamide.
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