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EZH2-mediated epigenetic silencing in germinal center B cells contributes to proliferation and lymphomagenesis

机译:EZH2介导的生发中心B细胞表观遗传沉默有助于增殖和淋巴瘤发生

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摘要

EZH2 is the catalytic subunit of the PRC2 Polycomb complex and mediates transcriptional repression through its histone methyltransferase activity. EZH2 is up-regulated in normal germinal center (GC) B cells and is implicated in lymphomagenesis. To explore the transcriptional programs controlled by EZH2, we performed chromatin immunoprecipitation (ChIP-on-chip) in GC cells and found that it binds approximately 1800 promoters, often associated with DNA sequences similar to Droso-phila Polycomb response elements. While EZH2 targets overlapped extensively between GC B cells and embryonic stem cells, we also observed a large GC-specific EZH2 regulatory program. These genes are preferentially histone 3 lysine 27–trimethylated and repressed in GC B cells and include several key cell cycle–related tumor suppressor genes. Accordingly, siRNA-mediated down-regulation of EZH2 in diffuse large B-cell lymphoma (DLBCL) cells resulted in acute cell cycle arrest at the G1/S transition and up-regulation of its tumor suppressor target genes. At the DNA level, EZH2-bound promoters are hypomethylated in GC B cells, but many of them are aberrantly hypermethylated in DLBCL, suggesting disruption of normal epigenetic processes in these cells. EZH2 is thus involved in regulating a specific epigenetic program in normal GCs, including silencing of antiproliferative genes, which may contribute to the malignant transformation of GC B cells into DLBCLs.
机译:EZH2是PRC2聚梳复合物的催化亚基,通过其组蛋白甲基转移酶活性介导转录抑制。 EZH2在正常生发中心(GC)B细胞中上调,并与淋巴瘤的发生有关。为了探索由EZH2控制的转录程序,我们在GC细胞中进行了染色质免疫沉淀(芯片上芯片),发现它结合了大约1800个启动子,通常与类似于Droso-phila Polycomb反应元件的DNA序列相关。虽然EZH2靶标在GC B细胞和胚胎干细胞之间广泛重叠,但我们还观察到了大型的GC特异性EZH2调控程序。这些基因优先被组蛋白3赖氨酸27三甲基化并在GC B细胞中被阻遏,并且包括几个与细胞周期相关的关键肿瘤抑制基因。因此,在弥漫性大B细胞淋巴瘤(DLBCL)细胞中siRNA介导的EZH2的下调导致G1 / S过渡的急性细胞周期停滞和其肿瘤抑制靶基因的上调。在DNA水平上,EZH2结合的启动子在GC B细胞中被低甲基化,但是其中许多在DLBCL中异常地高甲基化,表明这些细胞中正常表观遗传过程受到破坏。因此,EZH2参与了正常GC中特定表观遗传程序的调控,包括抗增殖基因的沉默,这可能有助于GC B细胞恶性转化为DLBCL。

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