首页> 外文OA文献 >Cyclin D1 silencing suppresses tumorigenicity, impairs DNA double strand break repair and thus radiosensitizes androgenindependent prostate cancer cells to DNA damage.
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Cyclin D1 silencing suppresses tumorigenicity, impairs DNA double strand break repair and thus radiosensitizes androgenindependent prostate cancer cells to DNA damage.

机译:细胞周期蛋白D1沉默抑制致瘤性,损害DNa双链断裂修复,从而使雄激素依赖性前列腺癌细胞对DNa损伤具有放射敏感性。

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摘要

Patients with hormone-resistant prostate cancer (PCa) have higher biochemical failure rates following radiation therapy (RT). Cyclin D1 deregulated expression in PCa is associated with a more aggressive disease: however its role in radioresistance has not been determined. Cyclin D1 levels in the androgen-independent PC3 and 22Rv1 PCa cells were stably inhibited by infecting with cyclin D1-shRNA. Tumorigenicity and radiosensitivity were investigated using in vitro and in vivo experimental assays. Cyclin D1 silencing interfered with PCa oncogenic phenotype by inducing growth arrest in the G1 phase of cell cycle and reducing soft agar colony formation, migration, invasion in vitro and tumor formation and neo-angiogenesis in vivo. Depletion of cyclin D1 significantly radiosensitizes PCa cells by increasing the RT-induced DNA damages by affecting the NHEJ and HR pathways responsible of the DNA double-strand break repair. Following treatment of cells with RT the abundance of a biomarker of DNA damage, γ-H2AX, was dramatically increased in sh-cyclin D1 treated cells compared to shRNA control. Concordant with these observations DNA-PKcs-activation and RAD51-accumulation, part of the DNA double-strand break repair machinery, were reduced in shRNA-cyclin D1 treated cells compared to shRNA control. We further demonstrate the physical interaction between CCND1 with activated-ATM, -DNA-PKcs and RAD51 is enhanced by RT. Finally, siRNA-mediated silencing experiments indicated DNA-PKcs and RAD51 are downstream targets of CCND1-mediated PCa cells radioresistance. In summary, these observations suggest that CCND1 is a key mediator of PCa radioresistance and could represent a potential target for radioresistent hormone-resistant PCa.
机译:激素抵抗性前列腺癌(PCa)的患者放射治疗(RT)后生化失败率更高。 PCa中细胞周期蛋白D1的表达下调与一种更具侵略性的疾病有关:但是尚未确定其在放射抵抗中的作用。雄激素非依赖性PC3和22Rv1 PCa细胞中的细胞周期蛋白D1水平受到细胞周期蛋白D1-shRNA感染的稳定抑制。使用体外和体内实验分析研究了致瘤性和放射敏感性。细胞周期蛋白D1沉默通过诱导细胞周期G1期的生长停滞并减少软琼脂菌落的形成,迁移,体外侵袭以及肿瘤的形成和体内新血管生成来干扰PCa致癌表型。细胞周期蛋白D1的耗尽通过影响负责DNA双链断裂修复的NHEJ和HR途径,增加RT诱导的DNA损伤,从而使PCa细胞显着放射增敏。与shRNA对照相比,sh-细胞周期蛋白D1处理的细胞中,用RT处理细胞后,DNA损伤的生物标记物γ-H2AX的含量大大增加。与这些观察结果一致,与shRNA对照相比,在shRNA-cyclin D1处理的细胞中,DNA-PKcs激活和RAD51积累(DNA双链断裂修复机制的一部分)减少了。我们进一步证明了CCND1与活化的ATM,-DNA-PKcs和RAD51之间的物理相互作用通过RT得以增强。最后,siRNA介导的沉默实验表明DNA-PKcs和RAD51是CCND1介导的PCa细胞放射抗性的下游靶标。总之,这些观察结果表明CCND1是PCa放射抗性的关键介质,并且可能代表了抗放射激素抵抗PCa的潜在目标。

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