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首页> 外文期刊>The Journal of Nutritional Biochemistry >Cytosine methylation in miR-153 gene promoters increases the expression of holocarboxylase synthetase, thereby increasing the abundance of histone H4 biotinylation marks in HEK-293 human kidney cells.
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Cytosine methylation in miR-153 gene promoters increases the expression of holocarboxylase synthetase, thereby increasing the abundance of histone H4 biotinylation marks in HEK-293 human kidney cells.

机译:miR-153基因启动子中的胞嘧啶甲基化增加了全羧化酶合成酶的表达,从而增加了HEK-293人肾细胞中组蛋白H4生物素化标记的丰度。

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摘要

Holocarboxylase synthetase (HCS) plays an essential role in catalyzing the biotinylation of carboxylases and histones. Biotinylated carboxylases are important for the metabolism of glucose, lipids and leucine; biotinylation of histones plays important roles in gene regulation and genome stability. Recently, we reported that HCS activity is partly regulated by subcellular translocation events and by miR-539. Here we tested the hypothesis that the HCS 3'-untranslated region (3'-UTR) contains binding sites for miR other than miR-539. A binding site for miR-153 was predicted to reside in the HCS 3'-UTR by using in silico analyses. When miR-153 site was overexpressed in transgenic HEK-293 human embryonic kidney cells, the abundance of HCS mRNA decreased by 77% compared with controls. In silico analyses also predicted three putative cytosine methylation sites in two miR-153 genes; the existence of these sites was confirmed by methylation-sensitive polymerase chain reaction. When cytosines were demethylated by treatment with 5-aza-2'-deoxycytidine, the abundance of miR-153 increased by more than 25 times compared with untreated controls, and this increase coincided with low levels of HCS and histone biotinylation. Together, this study provides novel insights into the mechanisms of novel epigenetic synergies among folate-dependent methylation events, miR and histone biotinylation
机译:全息羧化酶合成酶(HCS)在催化羧化酶和组蛋白的生物素化中起重要作用。生物素化的羧化酶对葡萄糖,脂质和亮氨酸的代谢很重要。组蛋白的生物素化在基因调节和基因组稳定性中起重要作用。最近,我们报道了HCS活性部分受到亚细胞转运事件和miR-539的调节。在这里,我们测试了以下假设:HCS 3'非翻译区(3'-UTR)包含miR-539以外的miR结合位点。通过计算机分析,预测miR-153的结合位点位于HCS 3'-UTR中。当miR-153位点在转基因HEK-293人胚肾细胞中过表达时,HCS mRNA的丰度比对照组降低了77%。在计算机分析中还预测了两个miR-153基因中的三个假定的胞嘧啶甲基化位点。这些位点的存在通过甲基化敏感性聚合酶链反应证实。当通过5-氮杂2'-脱氧胞苷处理使胞嘧啶脱甲基时,与未处理的对照相比,miR-153的丰度增加了25倍以上,并且这种增加与低水平的HCS和组蛋白生物素化相吻合。总之,这项研究为叶酸依赖性甲基化事件,miR和组蛋白生物素化之间新的表观遗传协同作用机理提供了新见解。

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