CHFR和PARP-1在B细胞淋巴瘤增殖和凋亡调控中的作用

Xiaodan Liu, Nian-Ju Zheng, Liang Song, Hua Pan, Aiqin Song
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摘要

背景。在b细胞非霍奇金淋巴瘤(NHL)中发现了叉头环指结构域检查点(CHFR)的异常甲基化,但其在癌变中的作用尚不清楚。CHFR可以通过引起聚腺苷核糖聚合酶的降解来控制其水平。本研究旨在探讨CHFR在b细胞NHL发病中的作用及机制。方法。将靶向CHFR的短发夹核糖核酸(ShRNAs)和聚adp核糖聚合酶1 (PARP-1)转导至Raji细胞,采用实时聚合酶链反应(PCR)和western blotting检测其表达情况。然后用CCK-8法和流式细胞术观察细胞的生长和凋亡情况。采用异种移植模型测定肿瘤大小和重量,并使用地西他滨(5-Aza-dC)通过甲基化特异性pcr检测进一步确定CHFR的甲基化状态。结果:5- aza - dc处理在信使核糖核酸(mRNA)和蛋白水平上促进了CHFR的表达,降低了PARP-1的表达。5-Aza-dC在体外和体内均能促进raji细胞凋亡,抑制其生长(P < 0.05)。这些结果与shRNA-CHFR组相反,但与shRNA-PARP-1组一致。CHFR和PARP-1在移植瘤模型中的表达谱与细胞模型中的表达谱一致。5-Aza-dC处理导致裸小鼠CHFR去甲基化。此外,在b细胞NHL细胞中CHFR与PARP-1可能存在负相关。结论。我们的研究结果表明,5-Aza-dC可以导致CHFR启动子的去甲基化并抑制Raji细胞的生长。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Association between CHFR and PARP-1, and Their Roles in Regulation of Proliferation and Apoptosis of B Cell Lymphoma
Background. Aberrant methylation of checkpoint with forkhead and ring finger domains (CHFR) was found in B-cell non-Hodgkin lymphoma (NHL), whereas its role in carcinogenesis is not clear. CHFR can control poly (ADP-ribose) polymerase levels by causing its degradation. The study was aimed to explore the roles and mechanisms of CHFR in the pathogenesis of B-cell NHL. Methods. Short hairpin ribonucleic acid (ShRNAs) targeting CHFR and poly (ADP-ribose) polymerase 1 (PARP-1) were transduced into Raji cells, and real-time polymerase chain reaction (PCR) and western blotting were carried out to determine their expression. Afterwards, the CCK-8 assay and flow cytometry were used to evaluate the cell growth and apoptosis. Tumor size and weight were determined using a xenograft model, and decitabine (5-Aza-dC) was used to further determine the methylation status of CHFR through a methylation specificity-PCR assay. Results. 5-Aza-dC-treatment promoted the expression of CHFR and decreased the expression of PARP-1 at both messenger ribonucleic acid (mRNA) and protein levels. 5-Aza-dC also accelerated Raji-cell apoptosis and restrained its growth in vitro and in vivo ( P < 0.05 ). These results were contrary to those observed in the shRNA-CHFR group but consistent with those observed in the shRNA-PARP-1 group. The expression profiles of CHFR and PARP-1 in the xenograft model were consistent with those in the cellular model. Treatment with 5-Aza-dC led to demethylation of CHFR in nude mice. Besides, there may be a negative correlation between CHFR and PARP-1 in B-cell NHL cells. Conclusion. Our findings indicated that 5-Aza-dC could lead to the demethylation of the CHFR promoter and suppress Raji cell growth.
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