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首页> 外文期刊>The international journal of biochemistry and cell biology >DNA methylation and histone modifications modulate the β1,3 galactosyltransferase β3Gal-T5 native promoter in cancer cells
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DNA methylation and histone modifications modulate the β1,3 galactosyltransferase β3Gal-T5 native promoter in cancer cells

机译:DNA甲基化和组蛋白修饰调节癌细胞中的β1,3半乳糖基转移酶β3Gal-T5天然启动子

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摘要

The native promoter of β1,3 galactosyltransferase β3Gal-T5 contributes to the expression of the enzyme and its oligosaccharide products, such as Lewis antigens, in many tissues. It is mainly sensitive to nuclear factor NF-Y and located nearby two CpG islands. To elucidate the regulation of the native promoter, we analyzed NF-Y protein and β3Gal-T5 mRNA, and found that NF-Y is scarcely modulated among various cell lines and biopsies from normal or cancerous colon. Conversely, β3Gal-T5 expression levels vary in the cell lines and are strongly down-regulated in colon cancer. We also performed quantitative methylation analysis of β3Gal-T5 CpG islands and found an inverse correlation between mRNA expression and DNA methylation. In particular, the methylation levels of both islands are always increased in cancer, with respect to the corresponding normal counterpart, in matched normal and tumor samples of colon and breast origin. Moreover, treatment with chromatin remodeling agents 5-aza-2′deoxycytidine and trichostatin A does not restore transcription in completely negative cells, but only increases expression in basally positive cells. However, methylation analysis after 5-aza-2′deoxycytidine treatment revealed partial demethylation of both islands in all treated cells. Finally, chromatin immunoprecipitation assays on β3Gal-T5 promoter showed that histone H3K4 trymethylation, H3K79 dimethylation, and H3K9-14 acetylation are high in cells expressing the transcript, and very low in those negative, while H4K20 trimethylation and H3K27 dimethylation are the opposite. We conclude that complex epigenetic modulation underlies the regulation of β3Gal-T5 native promoter.
机译:β1,3半乳糖基转移酶β3Gal-T5的天然启动子有助于该酶及其寡糖产物(如Lewis抗原)在许多组织中的表达。它主要对核因子NF-Y敏感,位于两个CpG岛附近。为了阐明天然启动子的调控,我们分析了NF-Y蛋白和β3Gal-T5mRNA,发现在正常或癌性结肠的各种细胞系和活检物中,NF-Y几乎没有被调节。相反,在结肠癌中,β3Gal-T5表达水平在细胞系中变化并且强烈下调。我们还对β3Gal-T5CpG岛进行了定量甲基化分析,发现mRNA表达与DNA甲基化呈负相关。特别地,相对于相应的正常对应物,在匹配的结肠和乳房起源的正常和肿瘤样品中,两个岛的甲基化水平总是在癌症中增加。此外,用染色质重塑剂5-氮杂-2'脱氧胞苷和曲古抑菌素A处理不能完全恢复阴性细胞的转录,而只能增加基本阳性细胞的表达。然而,在5-氮杂-2'脱氧胞苷处理后的甲基化分析显示在所有处理的细胞中两个岛的部分脱甲基。最后,在β3Gal-T5启动子上进行的染色质免疫沉淀分析表明,在表达转录本的细胞中,组蛋白H3K4的甲基化,H3K79的二甲基化和H3K9-14的乙酰化高,而在阴性的细胞中则低,而H4K20的三甲基化和H3K27的二甲基化则相反。我们得出结论,复杂的表观遗传调控是β3Gal-T5天然启动子调控的基础。

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