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首页> 外文期刊>The American journal of pathology. >Epigenetic Silencing of a Proapoptotic Cell Adhesion Molecule, the Immunoglobulin Superfamily Member IGSF4, by Promoter CpG Methylation Protects Hodgkin Lymphoma Cells from Apoptosis
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Epigenetic Silencing of a Proapoptotic Cell Adhesion Molecule, the Immunoglobulin Superfamily Member IGSF4, by Promoter CpG Methylation Protects Hodgkin Lymphoma Cells from Apoptosis

机译:通过启动子CpG甲基化的促凋亡细胞粘附分子,免疫球蛋白超家族成员IGSF4的表观遗传沉默可保护霍奇金淋巴瘤细胞免于凋亡。

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The malignant Hodgkin/Reed-Sternberg (HRS) cells of Hodgkin lymphoma (HL) are believed to derive from germinal center (GC) B cells, but lack expression of a functional B cell receptor. As apoptosis is the normal fate of B-cell receptor-negative GC B cells, mechanisms that abrogate apoptosis are thus critical in HL development, such as epigenetic disruption of certain pro-apoptotic cancer genes including tumor suppressor genes. Identifying methylated genes elucidates oncogenic mechanisms and provides valuable biomarkers; therefore, we performed a chemical epigenetic screening for methylated genes in HL through pharmacological demethylation and expression profiling. IGSF4/CADM1/TSLC1, a pro-apoptotic cell adhesion molecule of the immunoglobulin superfamily, was identified together with other methylated targets. In contrast to its expression in normal GC B cells, IGSF4 was down-regulated and methylated in HL cell lines, most primary HL, and microdissected HRS cells of 3/5 cases, but not in normal peripheral blood mononuclear cells and seldom in normal lymph nodes. We also detected IGSF4 methylation in sera of 14/18 (78%) HL patients but seldom in normal sera. Ectopic IGSF4 expression decreased HL cells survival and increased their sensitivity to apoptosis. IGSF4 induction that normally follows heat shock stress treatment was also abrogated in methylated lymphoma cells. Thus, our data demonstrate that IGSF4 silencing by CpG methylation provides an anti-apoptotic signal to HRS cells important in HL pathogenesis.
机译:据信霍奇金淋巴瘤(HL)的恶性霍奇金/里德-斯特恩伯格(HRS)细胞起源于生发中心(GC)B细胞,但缺乏功能性B细胞受体的表达。由于凋亡是B细胞受体阴性GC B细胞的正常命运,因此消除凋亡的机制对于HL的发展至关重要,例如某些促凋亡癌基因(包括肿瘤抑制基因)的表观遗传破坏。鉴定甲基化的基因阐明了致癌机制,并提供了有价值的生物标志物;因此,我们通过药理学脱甲基化和表达谱分析对HL中的甲基化基因进行了化学表观遗传学筛选。 IGSF4 / CADM1 / TSLC1是免疫球蛋白超家族的促凋亡细胞粘附分子,已与其他甲基化靶标一起鉴定。与其在正常GC B细胞中的表达相反,IGSF4在3/5例的HL细胞系,大多数原发性HL和显微解剖的HRS细胞中被下调并甲基化,但在正常的外周血单核细胞中则没有,而在正常的淋巴中很少节点。我们还在14/18(78%)HL患者的血清中检测到IGSF4甲基化,但在正常血清中很少检测到。异位IGSF4表达降低HL细胞存活率,并增加其对凋亡的敏感性。在甲基化的淋巴瘤细胞中也通常取消了通常在热休克应激处理后进行的IGSF4诱导。因此,我们的数据表明,通过CpG甲基化使IGSF4沉默为在HL发病机理中重要的HRS细胞提供了抗凋亡信号。

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