首页> 外文期刊>International Journal of Cancer =: Journal International du Cancer >Low folate metabolic stress reprograms DNA methylation-activated sonic hedgehog signaling to mediate cancer stem cell-like signatures and invasive tumour stage-specific malignancy of human colorectal cancers
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Low folate metabolic stress reprograms DNA methylation-activated sonic hedgehog signaling to mediate cancer stem cell-like signatures and invasive tumour stage-specific malignancy of human colorectal cancers

机译:低叶酸代谢应力重新编程DNA甲基化活化的声音刺猬信号,以介导癌症干细胞状象征和侵入性肿瘤阶段的人结肠病癌症

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摘要

The mechanistic role of colonic low folate metabolic stress (LFMS) in colorectal cancer (CRC) malignancy development remains unknown. Folate analysis on the 99 paired human CRC tissues localized LFMS to the deep invasive T3/T4 staged tumours with hypo-methylated sonic hedgehog (Shh) promoter region and amplified expressions of Shh ligand and Gli1 effector, which coincided with deregulated expressions of the epithelial-mesenchymal transition (EMT) mediators. Colonic folate levels of CRC were inversely correlated with pluripotent expressions of the SOX2, NANOG and OCT4 markers (p<0.05). Exposure of human colon adenocarcinoma cells to LFMS microenvironment significantly hypomethylated Shh promoter region, activated Shh signaling, induced transcript and protein expressions of the pluripotent markers, promoted trans-differentiation as EMT by deregulation of Snail mediator and epithelial marker E-cadherin, increased MMP2/MMP9 enzymatic digestion on matrix protein for invasion, and promoted self-renewal capability of anchorage-independent tumor-spheroid formation. LFMS-induced cancer stem cell (CSC) signature and CRC invasion is synergized with inhibition of DNA methylation by 5-Aza-2-deoxycytidine (5AZA) in rewiring EMT genotypes, which can be blockade by the Shh inhibitor (cyclopamine). The in vivo and in vitro data corroboratively identify CSC-like molecular targets specific to the LFMS-predisposed invasive CRC through reprogramming DNA methylation-activated Shh signaling. The study highlights CSC targets specific to LFMS-predisposed invasive CRC in optimizing folate co-chemotherapy to minimize tumour metastasis potential of CRC patients.
机译:结肠病低叶酸代谢应激(LFMS)在结肠直肠癌(CRC)恶性肿瘤中的机械作用仍然未知。 99对人CRC组织的叶酸分析将LFM定位为深侵入式T3 / T4分阶段肿瘤,用HYPO-甲基化的声音刺猬(SHH)启动子区和SHH配体和GLI1效应器的扩增表达,这与上皮的令人失望的表达式间充质转换(EMT)介质。 CRC的结肠叶酸水平与SOX2,NANOG和OCT4标记的多能表达相反(P <0.05)。将人结肠腺癌细胞暴露于LFMS微环境显着下甲基化的SHH启动子区,活化的SHH信号,诱导的多能标记物的诱导的转录物和蛋白质表达,通过蜗牛介体的放松管腔和上皮标记物E-Cadherin促进反式分化,增加MMP2 / MMP9酶促消化侵袭的基质蛋白,促进锚定无关肿瘤球体形成的自我更新能力。 LFMS诱导的癌症干细胞(CSC)签名和CRC侵袭通过在重新灌注EMT基因型中抑制DNA甲基化的抑制DNA甲基化,其可以通过SHH抑制剂(环丙氨酸)阻断。通过重编程DNA甲基化激活的SHH信号,体内和体外数据判断特异于LFMS预见的侵袭性CRC的CSC样分子靶标。该研究突出了CSC靶向LFMS的侵袭性CRC特异性的CSC目标,以优化叶酸联合化疗,以最大限度地减少CRC患者的肿瘤转移潜力。

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