EVALUATION OF SECRETED FRIZZLED-RELATED PROTEIN-2 METHYLATION STATUS IN PATIENTS WITH CHRONIC MYELOID LEUKEMIA

Mohammed Tahir, Dlnya Mohamad, Mohammad Karim
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Abstract

BackgroundChronic Myeloid Leukemia (CML) is a myeloproliferative disorder defined by the chromosomal translocation (t) (9;22) encoding for the BCR-ABL fusion gene. Tumor development and progression may be affected by hypermethylation of promoter regions of certain genes. Secreted Frizzled-Related Proteins (SFRPs) genes produce Wnt signaling antagonists, and their epigenetic silencing has been detected in multiple types of leukaemia. While epigenetic silencing has been broadly reported for SFRPs, SFRP2 is a family member less studied in leukaemia. ObjectivesTo evaluate SFRP2 gene methylation patterns in CML patients compared with healthy individuals. Materials and MethodsSodium bisulfite was applied to the extracted DNA from blood samples of 75 CML patients and 25 healthy subjects who served as the control group. The DNA was then analyzed by methylation-specific high-resolution melting (MS-HRM) using specific primers for the SFRP2 gene in promoter sequence. ResultsForty-five out of 75 CML patients investigated were shown to have SFRP2 methylation percentages between 50% to 100%, whereas 19 out of 25 healthy subjects had a methylation level of less than 50%. ConclusionThe current study demonstrated that SFRP2 promoter hypermethylation exists in CML, as in several other solid tumours. Hence, methylation of this gene may play a part in initiating leukemogenesis.
评估慢性髓性白血病患者的分泌型皱纹相关蛋白-2 甲基化状态
背景 慢性粒细胞白血病(CML)是一种骨髓增生性疾病,由编码 BCR-ABL 融合基因的染色体易位(t)(9;22)所决定。某些基因启动子区域的高甲基化可能会影响肿瘤的发生和发展。分泌型 Frizzled-Related Proteins(SFRPs)基因能产生 Wnt 信号拮抗剂,在多种类型的白血病中发现了这些基因的表观遗传沉默。虽然SFRPs基因的表观遗传沉默已被广泛报道,但SFRP2是白血病中研究较少的一个家族成员。 目的评估与健康人相比,CML 患者的 SFRP2 基因甲基化模式。 材料与方法对 75 名 CML 患者和作为对照组的 25 名健康人的血样提取 DNA 进行亚硫酸氢钠处理。然后使用针对 SFRP2 基因启动子序列的特异性引物对 DNA 进行甲基化特异性高分辨熔解(MS-HRM)分析。 结果75名接受调查的CML患者中有45人的SFRP2甲基化率在50%至100%之间,而25名健康人中有19人的甲基化水平低于50%。 结论目前的研究表明,SFRP2 启动子高甲基化存在于 CML 和其他几种实体瘤中。因此,该基因的甲基化可能在白血病的发生过程中起了一定的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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