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首页> 外文期刊>BMC Medical Genetics >The mGluR5 antagonist AFQ056 does not affect methylation and transcription of the mutant FMR1 gene in vitro
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The mGluR5 antagonist AFQ056 does not affect methylation and transcription of the mutant FMR1 gene in vitro

机译:mGluR5拮抗剂AFQ056在体外不影响突变FMR1基因的甲基化和转录

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Background Fragile X syndrome (FXS), the leading cause of inherited mental retardation, is due to expansion and methylation of a CGG sequence in the FMR1 gene, which result in its silencing and consequent absence of FMRP protein. This absence causes loss of repression of metabotropic glutamate receptor 5 (mGluR5)-mediated pathways resulting in the behavioral and cognitive impairments associated with FXS. In a randomized, double-blind trial it was recently demonstrated a beneficial effect of AFQ056, a selective inhibitor of metabotrobic glutamate receptor type 5 (mGluR5), on fully methylated FXS patients respect to partially methylated FXS ones. Methods To determine whether AFQ056 may have secondary effects on the methylation and transcription of FMR1 , here we treated three FXS lymphoblastoid cell lines and one normal control male line. A quantitative RT-PCR was performed to assess transcriptional reactivation of the FMR1 gene. To assess the methylation status of the FMR1 gene promoter it was carried out a bisulphite sequencing analysis. Results Both FMR1 -mRNA levels and DNA methylation were unmodified with respect to untreated controls. Conclusions These results demonstrate that the AFQ056 effect on fully methylated FXS patients is not due to a secondary effect on DNA methylation and consequent transcriptional activation of FMR1 .
机译:背景脆弱性X综合征(FXS)是遗传性智力低下的主要原因,是由于FMR1基因中CGG序列的扩增和甲基化,导致其沉默并导致缺少FMRP蛋白。这种缺乏会导致代谢型谷氨酸受体5(mGluR5)介导的通路的抑制丧失,从而导致与FXS相关的行为和认知障碍。在一项随机,双盲试验中,最近证明了AFQ056(一种代谢型5型谷氨酸受体的选择性抑制剂)对完全甲基化FXS患者相对于部分甲基化FXS患者的有益作用。方法为了确定AFQ056是否对FMR1的甲基化和转录具有继发性作用,我们在这里处理了3种FXS淋巴母细胞系和1种正常对照雄性系。进行定量RT-PCR评估FMR1基因的转录激活。为了评估FMR1基因启动子的甲基化状态,进行了亚硫酸氢盐测序分析。结果相对于未处理的对照,FMR1-mRNA水平和DNA甲基化均未改变。结论这些结果表明,AFQ056对完全甲基化的FXS患者的作用不是由于对DNA甲基化的次要作用和由此引起的FMR1的转录激活。

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