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首页> 外文期刊>Molecular Carcinogenesis >Upregulation of DKK3 by miR‐483‐3p plays an important role in the chemoprevention of colorectal cancer mediated by black raspberry anthocyanins
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Upregulation of DKK3 by miR‐483‐3p plays an important role in the chemoprevention of colorectal cancer mediated by black raspberry anthocyanins

机译:MiR-483-3P对DKK3的上调在黑覆盆子花青素介导的结直肠癌化学预防中起着重要作用

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摘要

Abstract It is reported that black raspberry (BRB) anthocyanins could act as a potential chemopreventive agent for colorectal cancer (CRC). However, the underlying mechanism by which BRB anthocyanins inhibits the carcinogenesis of CRC cells has not been elucidated. The abnormal expression of microRNAs (miRNAs) that target important tumor suppressor genes is usually associated with CRC development. In this study, we explored whether BRB anthocyanins could affect the expression of certain miRNAs in an azoxymethane (AOM)/dextran sulphate sodium (DSS)‐induced CRC mouse model and human CRC cell lines. miRNA microarray analysis was used to determine the differences in miRNA expression between AOM/DSS‐induced mice fed with a diet supplemented without or with BRB anthocyanins. The expression of one particular miRNA, miR‐483‐3p, was found to decrease dramatically in AOM/DSS‐induced mice that were fed with a diet supplemented with BRB anthocyanins. Subsequent quantitative real‐time polymerase chain reaction and Western blot analyses showed that the reduced expression of miR‐483‐3p was accompanied by an increased expression of Dickkopf 3 (DKK3), a potential target of miR‐483‐3p as predicted by bioinformatic analysis. The protein and messenger RNA levels of DKK3 were significantly upregulated when the miR‐483‐3p level was reduced by a miR‐483‐3p‐specific inhibitor, suggesting that DKK3 might be the target gene of miR‐483‐3p. In addition, the downstream factors of the DKK3 signaling pathway, which included Wnt/β‐catenin, also played a role in the miR‐483‐3p‐mediated anticancer effect of BRB anthocyanins. Thus, miR‐483‐3p might be a potential target in BRB anthocyanin‐mediated prevention of CRC.
机译:摘要据报道,黑覆盆子(BRB)花青素可以作为结直肠癌(CRC)的潜在化学预防剂。然而,BRB花青素抑制CRC细胞致癌的潜在机制尚未阐明。靶向重要肿瘤抑制基因的微小RORNA(mIRNA)的异常表达通常与CRC发育有关。在这项研究中,我们探讨了BRB花青素是否可能影响氮杂甲烷(AOM)/葡聚糖硫酸钠(DSS)诱导的CRC小鼠模型和人CRC细胞系中某些miRNA的表达。 MiRNA微阵列分析用于确定AOM / DSS诱导的小鼠之间的miRNA表达的差异,其喂食饮食不含或与BRB花青素。发现一个特定miRNA miR-483-3p的表达在AOM / DSS诱导的小鼠中急剧下降,所述小鼠被喂食饮食,所述小鼠补充剂补充有BRB花青素。随后的定量实时聚合酶链反应和蛋白质印迹分析表明,MiR-483-3P的表达降低伴随着DickKopf 3(DKK3)的表达增加,MiR-483-3P的潜在靶标,如生物信息分析所预测的。当MiR-483-3P特异性抑制剂减少miR-483-3P水平时,DKK3的蛋白质和信使RNA水平显着上调,表明DKK3可能是miR-483-3p的靶基因。此外,包括Wnt /β-catenin的DKK3信号传导途径的下游因素也起到了BRB花青素的miR-483-3P介导的抗癌作用中的作用。因此,MiR-483-3P可能是BRB花青素介导的CRC中的潜在靶标。

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