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Toll-like receptor 2 and Toll-like receptor 4 exhibit distinct regulation of cancer cell stemness mediated by cell death-induced high-mobility group box 1

机译:Toll样受体2和Toll样受体4表现出由细胞死亡诱导的高迁移率介导的癌细胞干细胞的独特调节作用方框1

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Background High-mobility group box 1 (HMGB1), a common extracellular damage associated molecular pattern molecule, is overexpressed in several solid tumors including pancreatic carcinoma. We previously observed that radiotherapy induced dying cells secrete HMGB1 and accelerate pancreatic carcinoma progression through an unclear mechanism. Methods Using the Millicell system as an in vitro co-culture model, we performed quantitative reverse transcriptase-polymerase chain reaction, western blot and sphere forming ability analyses to access the effect of dying-cell-derived HMGB1 on CD133sup+/sup cancer cell stemness in vitro and in vivo . Interactions between HMGB1 and Toll-like receptor 2(TLR2)/TLR4 were studied by co- immunoprecipitation. Western blot and short-hairpin RNA-based knockdown assays were conducted to detect HMGB1 and TLR2/TLR4 signaling activity. Findings Radiation-associated, dying-cell-derived HMGB1 maintained stemness and contributed to CD133sup+/sup cancer stem cell self-renewal in vitro and in vivo . In overexpressing and silencing experiments, we demonstrated that the process was activated by TLR2 receptor, whereas TLR4 antagonized HMGB1-TLR2 signaling. Wnt/β-catenin signaling supported the HMGB1-TLR2 mediated stemness of CD133sup+/sup cancer cells. Interpretation Our results show how irradiation-induced cell death might enhance the stemness of resident cancer cells, and indicate HMGB1-TLR2 signaling as a potential therapeutic target for preventing pancreatic cancer recurrence.
机译:背景高迁移率族框1(HMGB1)是一种常见的细胞外损伤相关分子模式分子,在包括胰腺癌在内的几种实体瘤中过表达。我们以前观察到放射疗法诱导的垂死细胞分泌HMGB1,并通过不清楚的机制加速胰腺癌的进展。方法采用Millicell系统作为体外共培养模型,进行定量逆转录酶-聚合酶链反应,蛋白质印迹和球形成能力分析,以研究染色细胞衍生的HMGB1对CD133 + 癌症干细胞的自我更新。在过表达和沉默实验中,我们证明了该过程被TLR2受体激活,而TLR4拮抗HMGB1-TLR2信号传导。 Wnt /β-catenin信号通路支持HMGB1-TLR2介导的CD133 + 癌细胞的干性。解释我们的结果表明,辐射诱导的细胞死亡如何增强常驻癌细胞的干性,并表明HMGB1-TLR2信号作为预防胰腺癌复发的潜在治疗靶标。

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