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首页> 外文期刊>Genes & Genetic Systems >MeCP2 knockdown reveals DNA methylation-independent gene repression of target genes in living cells and a bias in the cellular location of target gene products
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MeCP2 knockdown reveals DNA methylation-independent gene repression of target genes in living cells and a bias in the cellular location of target gene products

机译:MeCP2敲低揭示活细胞中靶基因的DNA甲基化独立基因阻遏和靶基因产物在细胞内定位的偏向

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References(26) Cited-By(9) MeCP2, a methyl-CpG binding domain (MBD) protein, is known to bind to methylated CpG sites via a conserved MBD, leading to transcriptional repression. However, studies in cell-free system for gene repression and MeCP2 binding have suggested that DNA methylation-independent repression also occurs in living cells. It has been difficult to characterize the target genes of MeCP2 because a limited number have been identified to date. In this context, we screened for MeCP2 target genes using knockdown (KD) experiments combined with microarray gene expression analyses. Of the 49 genes that showed a more than three-fold increase in expression in two independent KD experiments conducted with different siRNA sets, unexpectedly, half (24 genes) did not contain promoter CpG islands (CGIs). Of seven selected genes that did contain CGIs, only two were methylated at the CGI, bound MeCP2 before KD, and reduced MeCP2 after KD. For three, MeCP2 was observed to bind to the unmethylated CGI before KD, and for one MeCP2 was reduced after KD. Another two genes neither had DNA methylation nor bound MeCP2 before KD. Gene ontology analysis suggested that MeCP2 represses a certain group of genes. These results suggest that in addition to the canonical gene repression function, MeCP2 can repress gene expression by binding to unmethylated DNA in particular genes in living cells.
机译:参考文献(26)被引用的By(9)MeCP2,一种甲基CpG结合域(MBD)蛋白,通过保守的MBD与甲基化CpG位点结合,导致转录抑制。但是,在无细胞系统中进行基因抑制和MeCP2结合的研究表明,DNA甲基化非依赖性抑制也发生在活细胞中。迄今为止,鉴定MeCP2的靶基因已经很困难,因此难以表征。在这种情况下,我们使用组合基因芯片分析(KD)实验筛选了MeCP2靶基因。在用不同的siRNA组进行的两个独立的KD实验中,49个基因的表达增加了三倍以上,出乎意料的是,一半(24个基因)不包含启动子CpG岛(CGI)。在选择的确实包含CGI的七个基因中,只有两个在CGI处甲基化,在KD之前结合MeCP2,在KD之后还原MeCP2。对于三者,观察到MeCP2在KD之前与未甲基化的CGI结合,而对于一者,MeCP2在KD之后被还原。在KD之前,另外两个基因既没有DNA甲基化,也没有结合MeCP2。基因本体分析表明,MeCP2抑制了某些基因。这些结果表明,除了经典的基因抑制功能外,MeCP2还可以通过与活细胞中特定基因的未甲基化DNA结合来抑制基因表达。

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