Indirect Tumor Inhibitory Effects of MicroRNA-124 through Targeting EZH2 in The Multiple Myeloma Cell Line

Javid Sabour Takanlu, Arad Aghaie Fard, Saeed Mohammdi, S. M. A. Hosseini Rad, S. Abroun, M. Nikbakht
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引用次数: 6

Abstract

Objective Multiple myeloma (MM) is an incurable plasma cell malignancy. Several genetic and epigenetic changes affect numerous critical genes expression status in this disorder. CDKN2A gene is expressed at low level in almost all cases with MM disease. The mechanism of this gene down-regulation has remained controversial. In the present study, we targeted EZH2 by microRNA-124 (miR-124) in L-363 cells and assessed following possible impact on CDKN2A gene expression and phenotypic changes. Materials and Methods In this experimental study, growth inhibitory effects of miR-124 were measured by MTT assay in L-363 cell line. Likewise, cell cycle assay was measured by flowcytometery. The expression levels of EZH2 and CDKN2A were evaluated by real-time quantitative reverse-transcription polymerase chain reaction (qRT-PCR). Results qRT-PCR results showed induction of EZH2 gene expression after transduction of cells with lentivector expressing miR-124. The expression of CDKN2A was also upregulated as the result of EZH2 supression. Coincide with gene expression changes, cell cycle analysis by flow-cytometry indicated slightly increased G1-arrest in miR- transduced cells (P<0.05). MTT assay results also showed a significant decrease in viability and proliferation of miR- transduced cells (P<0.05). Conclusion It seems that assembling of H3K27me3 mark mediated by EZH2 is one of the key mechanisms of suppressing CDKN2A gene expression in MM disease. However, this suppressive function is applied by a multi-factor mechanism. In other words, targeting EZH2, as the core functional subunit of PRC2 complex, can increase expression of the downstream suppressive genes. Consequently, by increasing expression of tumor suppressor genes, myeloma cells are stopped from aberrant expansions and they become susceptible to regulated cellular death.
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MicroRNA-124靶向EZH2对多发性骨髓瘤细胞的间接抑瘤作用
目的多发性骨髓瘤是一种无法治愈的浆细胞恶性肿瘤。在这种疾病中,一些遗传和表观遗传变化影响了许多关键基因的表达状态。CDKN2A基因在几乎所有MM病病例中均低表达。该基因下调的机制一直存在争议。在本研究中,我们在L-363细胞中通过microRNA-124 (miR-124)靶向EZH2,并评估其对CDKN2A基因表达和表型变化的可能影响。材料与方法本实验研究采用MTT法检测miR-124在L-363细胞系中的生长抑制作用。同样,用流式细胞仪测定细胞周期。实时定量逆转录聚合酶链反应(qRT-PCR)检测EZH2和CDKN2A的表达水平。结果qRT-PCR结果显示,用表达miR-124的慢载体转导细胞后,诱导EZH2基因表达。CDKN2A的表达也因EZH2的抑制而上调。与基因表达变化相一致,流式细胞术细胞周期分析显示miR-转导细胞g1阻滞轻微增加(P<0.05)。MTT实验结果也显示miR转导细胞的活力和增殖能力显著降低(P<0.05)。结论EZH2介导的H3K27me3标记的组装可能是MM病CDKN2A基因表达抑制的关键机制之一。然而,这种抑制功能是由多因素机制应用的。也就是说,靶向作为PRC2复合体核心功能亚基的EZH2,可以增加下游抑制基因的表达。因此,通过增加肿瘤抑制基因的表达,骨髓瘤细胞被阻止了异常扩张,它们变得容易受到调节的细胞死亡。
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