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首页> 外文期刊>Clinical epigenetics. >Decreased expression of cell proliferation-related genes in clonally derived skin fibroblasts from children with Silver-Russell syndrome is independent of the degree of 11p15 ICR1 hypomethylation
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Decreased expression of cell proliferation-related genes in clonally derived skin fibroblasts from children with Silver-Russell syndrome is independent of the degree of 11p15 ICR1 hypomethylation

机译:Silver-Russell综合征患儿无性系皮肤成纤维细胞中细胞增殖相关基因的表达降低与11p15 ICR1甲基化程度无关

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BackgroundThe in vitro analysis of the hypomethylation of imprinting control region 1 (ICR1) within the IGF2/H19 locus is challenged by the mosaic distribution of the epimutation in tissues from children with Silver-Russell syndrome (SRS). To exclude mosaicism, clonal cultures of skin fibroblasts from four children with SRS and three controls were analyzed. Cell proliferation, IGF-II secretion, and IGF2 and H19 expression were measured, and a microarray expression analysis was performed. ResultsSingle-cell expansion established severely ICR1 hypomethylated clones (SRShypo) and normomethylated clones (SRSnormo) from the patients and controls (Cnormo). IGF2 expression was below the detection limit of the quantitative real-time PCR (qRT-PCR) assay, whereas H19 expression was detectable, without differences between fibroblast clones. Cell count-related IGF-II release was comparable in SRShypo and Cnormo supernatants. Cell proliferation was diminished in SRShypo compared to Cnormo ( p =?0.035). The microarray analysis revealed gene expression changes in SRS clones, predicting a decrease in cell proliferation and a delay in mitosis. ConclusionsThe analysis of severely ICR1 hypomethylated clonal fibroblasts did not reveal functional differences compared to normomethylated clones with respect to IGF2 and H19 expression. A difference compared to the clones from healthy individuals was present in the form of a lower proliferation rate, presumably due to impaired cell cycle progression.
机译:背景IGF2 / H19基因座内印迹控制区1(ICR1)的甲基化不足的体外分析受到银-罗素综合征(SRS)儿童组织中the变的镶嵌分布的挑战。为排除镶嵌现象,分析了来自四名SRS儿童和三名对照的皮肤成纤维细胞的克隆培养。测量细胞增殖,IGF-II分泌以及IGF2和H19表达,并进行微阵列表达分析。结果单细胞扩增建立了来自患者和对照组(Cnormo)的严重ICR1亚甲基化克隆(SRShypo)和正甲基化克隆(SRSnormo)。 IGF2表达低于实时定量PCR(qRT-PCR)分析的检测极限,而H19表达是可检测的,在成纤维细胞克隆之间没有差异。在SRShypo和Cnormo上清液中,与细胞计数相关的IGF-II释放相当。与Cnormo相比,SRShypo中的细胞增殖减少了(p =?0.035)。基因芯片分析揭示了SRS克隆中基因表达的变化,预示着细胞增殖的减少和有丝分裂的延迟。结论对重度ICR1低甲基化的克隆成纤维细胞的分析没有发现与正常甲基化克隆相比在IGF2和H19表达方面的功能差异。与来自健康个体的克隆相比,存在差异,其增殖速率较低,可能是由于细胞周期进程受损所致。

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