PO.CH01.05 · 化学
百里醌通过改变新型circRNA和miRNA抑制胰腺导管腺癌的生长
Thymoquinone blocks pancreatic ductal adenocarcinoma growth by altering novel circRNAs and miRNAs
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
胰腺导管腺癌(PDAC)预计将成为全球癌症相关死亡的第二大原因,这凸显了识别新型治疗策略的迫切需求。环状RNA(circRNA)是一类具有闭合环状结构的小非编码RNA亚群,由RNA的反向剪接生成,在许多基因的转录及转录后调控过程中发挥重要作用。circRNA调控失常会导致多种肿瘤的发生和进展。迄今为止,尚无研究评估是否可利用天然物衍生物来调控circRNA以获得治疗益处。本研究的目的是识别在PDAC模型中受黑种草(Nigella sativa)衍生物百里醌(TQ)调控的肿瘤相关circRNA和miRNA。方法:circRNA-seq、RNA pull-down、细胞活力检测、RT-qPCR、CSC球形成实验、克隆形成实验及miRNA转染技术。TQ处理导致PDAC致癌性circRNA下调,同时抑制细胞生长、CSC自我更新能力及克隆形成能力。RT-qPCR显示TQ抑制了5个测序鉴定的circRNA(hsa_circ_0054853、hsa_circ_0012152、hsa_circ_0001495、hsa_circ_0006877和hsa_circ_0000567)的表达,这些circRNA在PDAC中本身升高而在正常细胞中不升高。发现CircR-0054853可结合特定的抑癌miRNA,即miR-1248和miR-1287。这些miRNA的强制表达不仅抑制细胞生长,还增加了PDAC细胞对TQ的敏感性,而TQ处理则升高了这些miRNA的表达。这些发现提示circR-0054853可能通过海绵吸附抑癌性miRNA而充当致癌性circRNA,从而促进PDAC生长,而这一过程可被TQ逆转。值得注意的是,circR-0054853含有22个AGO2结合位点,RNA免疫沉淀实验证实其与AGO2的结合被TQ下调。我们还发现,在Kras突变的PDAC体外和动物模型中,TQ显著提高了吉西他滨/纳米紫杉醇或pan-Kras抑制剂RMC6236的疗效。TQ与RMC6236联合处理在Kras突变细胞中对EZH2及REK/MEK通路显示出显著的联合效应。总之,我们首次报道TQ具有抗肿瘤活性,并通过调控circRNA、miRNA及RBP相互作用而对肿瘤相关的细胞信号发挥抑制作用,这值得进一步的临床前及临床研究。
查看英文原文 English abstract
Pancreatic ductal adenocarcinoma (PDAC) is projected to become the second leading cause of cancer-related deaths worldwide underscoring the urgent need for the identification of novel therapeutical strategies. Circular RNAs (circRNAs) are a sub-group of small non-coding RNAs with a closed loop structure generated by back splicing of RNAs which play a significant role in the regulation of transcriptional and post-transcriptional processes of many genes. Altered regulations of circRNAs result in tumorigenesis and progression of a wide variety of tumors. To date there are no studies that have evaluated whether circRNAs could be modulated using natural agent derivatives for therapeutic benefit. The objective of this study is to identify tumor associated circRNAs and miRNAs modulated by black seed derivative Nigella sativa thymoquinone (TQ) in PDAC models. Methods: circRNA-seq, RNA pull-down, cell viability, RT-qPCR, CSC sphere formation, colony formation assays and miRNA transfection technique. TQ treatment resulted in the downregulation of PDAC-oncogenic circRNAs, along with the inhibition of cell growth, CSC self-renewal capacity, and clonogenic capacity. RT-qPCR showed that TQ suppressed the expression of 5 of the sequencing identified circRNAs (hsa_circ_0054853, hsa_circ_0012152, hsa_circ_0001495, hsa_circ_0006877, and hsa_circ_0000567) that were inherently elevated in PDAC and not in normal cells. CircR-0054853 was found to bind to specific tumor suppressor miRNAs, miR-1248 and miR-1287. The forced-expressions of these miRNAs result not only in the inhibition of cell growth but increased the sensitivity to TQ in PDAC cells as TQ treatment increased expressions of these miRNAs. These findings suggest that circR-0054853 may act as an oncogenic circRNA by sponging tumor-suppressive miRNAs, thereby promoting PDAC growth, a process that can be reversed by TQ. Notably, circR-0054853 contains 22 binding sites for AGO2, and RNA immunoprecipitation assays confirmed that its binding to AGO2 was downregulated by TQ. We also found that TQ significantly increased the efficacy of gemcitabine/nap-paclitaxel or pan Kras inhibitor RMC6236 in Kras mutant PDAC in vitro and animal models. The co-treatment of TQ with RMC6236 showed a remarkable combination effect on EZH2 and REK/MEK pathway in Kras mutant cells. In conclusion, for the first time we report that TQ has anti-tumor activity and exerts its inhibitory effects on tumor-associated cell signaling through the regulations of circRNAs, miRNAs and RBP interactions that warrants further pre-clinical and clinical investigations.
利益披露 Disclosure
B. Bao, None..
I. Muqbil, None..
M. Uddin, None..
Y. Shi, None..
Y. Wan, None..
A. Aboukameel, None..
R. M. Mohammad, None.