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S100P contributes to promoter demethylation and transcriptional activation of SLC2A5 to promote metastasis in colorectal cancer

机译:S100P有助于启动子去甲基化和SLC2A5的转录激活,以促进结直肠癌转移

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Background SLC2A5 is a high-affinity fructose transporter, which is frequently upregulated in multiple human malignant tumours. However, the function and molecular mechanism of SLC2A5 in colorectal cancer (CRC) remain unknown. Methods We detected the expression levels of SLC2A5 in CRC tissues and CRC cell lines by western blotting, qRT-PCR and immunohistochemistry. CRC cell lines with stable overexpression or knockdown of SLC2A5 were constructed to evaluate the functional roles of SLC2A5 in vitro through conventional assays. An intrasplenic inoculation model was established in mice to investigate the effect of SLC2A5 in promoting metastasis in vivo. Methylation mass spectrometry sequencing, methylation specific PCR, bisulphite sequencing PCR, ChIP-qPCR and luciferase reporter assay were performed to investigate the molecular mechanism underlying transcriptional activation of SLC2A5. Results We found that SLC2A5 was upregulated in colorectal tumour tissues. Functionally, a high level of SLC2A5 expression was associated with increased invasion and metastasis capacities of CRC cells both in vitro and in vivo. Mechanistically, we unveiled that S100P could integrate to a specific region of SLC2A5 promoter, thereby reducing its methylation levels and activating SLC2A5 transcription. Conclusions Our results reveal a novel mechanism that S100P mediates the promoter demethylation and transcription activation of SLC2A5, thereby promoting the metastasis of CRC.
机译:背景技术SLC2A5是高亲和力果糖转运蛋白,其经常在多种人恶性肿瘤中升高。然而,结直肠癌(CRC)中SLC2A5的功能和分子机制仍然未知。方法通过蛋白质印迹,QRT-PCR和免疫组化检测CRC组织和CRC细胞系中SLC2A5的表达水平。构建具有稳定过表达或SLC2A5敲低的CRC细胞系以通过常规测定评估SLC2A5的功能作用。在小鼠中建立了一种肾内接种模型,以研究SLC2A5在促进体内转移的影响。进行甲基化质谱测序,进行甲基化特异性PCR,双硫酸脲素测序PCR,芯片 - QPCR和荧​​光素酶报告结果,以研究SLC2A5的转录激活下面的分子机制。结果我们发现SLC2A5在结肠直肠肿瘤组织中上调。在功能上,高水平的SLC2a5表达与体外和体内CRC细胞的侵袭和转移能力增加相关。机械地,我们推出了S100P可以集成到SLC2A5启动子的特定区域,从而降低其甲基化水平并激活SLC2A5转录。结论我们的结果揭示了一种新的机制,S100p介导SLC2a5的启动子去甲基化和转录激活,从而促进CRC的转移。

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