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Quantitative analysis of methylation status at 11p15 and 7q21 for the genetic diagnosis of Beckwith-Wiedemann syndrome and Silver-Russell syndrome

机译:定量分析Beckwith-Wiedemann综合征和Silver-Russell综合征在11p15和7q21甲基化状态的遗传诊断

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Methylation-specific (MS) multiplex ligation-dependent probe amplification (MLPA) at two differentially methylated regions (DMRs) at chromosome 11p15, H19-DMR and LIT1-DMR, and microsatellite analysis for uniparental disomy (UPD) at chromosome 7 or 11, have been recommended for the genetic diagnosis of the Beckwith-Wiedemann syndrome (BWS) and the Silver-Russell syndrome (SRS). In this study, the efficacy of the MS pyrosequencing method at H19-DMR and LIT1-DMR at 11p15 and SGCE-DMR at 7q21 was evaluated for the genetic diagnosis of BWS (n=18) and SRS (n=20) patients. Epigenetic alterations or UPD were detected in 83% of BWS and 50% of SRS individuals by MS-MLPA, but the detection rate increased to 95% of BWS and 70% of SRS by MS pyrosequencing. Thirteen BWS patients (72%) harbored loss-of-methylation (LOM) at LIT1-DMR and two patients (11%) harbored gain-of-methylation (GOM) at H19-DMR, whereas two patients (11%) had both LOM at LIT1-DMR and GOM at H19-DMR, reflecting paternal UPD 11. Thirteen SRS patients (65%) harbored LOM at H19-DMR, whereas one patient (5%) had GOM at SGCE-DMR, reflecting maternal UPD 7. Birth anthropometric profiles were significantly correlated to methylation scores at either H19-DMR or LIT1-DMR. In conclusion, MS pyrosequencing enhanced the detection rate of molecular defects in BWS and SRS. Moreover, it indicates that methylation status at 11p15.5 might have an important role in fetal growth.
机译:染色体11p15,H19-DMR和LIT1-DMR的两个差异甲基化区域(DMR)的甲基化特异性(MS)多重连接依赖探针扩增(MLPA),以及7号或11号染色体单亲二体性(UPD)的微卫星分析。已被推荐用于Beckwith-Wiedemann综合征(BWS)和Silver-Russell综合征(SRS)的遗传诊断。在这项研究中,评估了MS焦磷酸测序方法在11p15时H19-DMR和LIT1-DMR以及7q21时SGCE-DMR的功效,用于BWS(n = 18)和SRS(n = 20)患者的遗传诊断。 MS-MLPA在83%的BWS和50%的SRS个体中检测到表观遗传改变或UPD,但MS焦磷酸测序法的检测率增加到BWS的95%和SRS的70%。 13名BWS患者(72%)在LIT1-DMR处出现甲基化缺失(LOM),两名患者(11%)在H19-DMR处发生甲基化(GOM),而2名患者(11%)均有LIT1-DMR的LOM和H19-DMR的GOM,反映了父亲的UPD 11. 13例SRS患者(65%)在H19-DMR处存在LOM,而SGCE-DMR的1名患者(5%)具有GOM,反映了母体UPD 7。出生人体测量数据与H19-DMR或LIT1-DMR处的甲基化评分显着相关。总之,质谱焦磷酸测序提高了BWS和SRS中分子缺陷的检测率。此外,这表明在11p15.5处的甲基化状态可能在胎儿生长中起重要作用。

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