Ganbarjeddi Saiedeh, Azimi Ako, Zadi Heydarabad Milad, Hemmatzadeh Maryam, Mohammadi Shahin, Mousavi Ardehaie Reza, Zamani Majid, Baharaghdam Sina, Esmaeili Sajjad, Ghasemi Amin
School of Medicine, Karazin Kharkiv National University, Kharkiv, Ukraine.
Department of Basic Sciences, Maragheh University of Medical Sciences, Maragheh, Iran.
Asian Pac J Cancer Prev. 2020 Feb 1;21(2):523-529. doi: 10.31557/APJCP.2020.21.2.523.
one of the main mechanisms in which cancer cells are resistant to chemotherapy drugs and therapeutic strategies is resistance to apoptosis due to these anticancer factors. Regulating the expression of genes through epigenetics, especially regulation through methylation, is one of the key aspects of regulating gene expression and the function of genes, which is also regulated by the pathways regulating the pathway of apoptosis. The epigenetic regulatory phenomenon in cancer cells can undergo a change in regulation and induces resistance to apoptosis against chemotherapy and anticancer factors. The purpose of the present scrutiny was defined to probe the effect of subtoxic prednisolone dose on the level of promoter methylation and gene expression of BAX and BCL2 in the CCRF-CEM cells.
The treated cells by prednisolone, cultured in RPMI 1640 medium in standard condition. Alteration in promoter DNA methylation was analyzed by use of methylation specific-PCR (MSP) technique after the defined intervened time of Prednisolone treatment with a subtoxic dose.
Prednisolone can induce apoptosis via alteration in BAX and BCL2 genes, based on our previous scrutiny. This essay shows no varies in the Pattern of DNA methylation of examined genes; however, prednisolone changes the expression of examined genes.
Lack of alteration through prednisolone treatment in DNA methylation template of BAX and BCL2 genes make this possible that Prednisolone affects apoptotic gene expression via different pathways, which need more research to be done about it.
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癌细胞对化疗药物和治疗策略产生抗性的主要机制之一是由于这些抗癌因子导致的细胞凋亡抗性。通过表观遗传学调控基因表达,尤其是通过甲基化进行调控,是调控基因表达和基因功能的关键方面之一,其也受细胞凋亡途径的调控。癌细胞中的表观遗传调控现象可发生调控变化,并诱导对化疗和抗癌因子的细胞凋亡抗性。本研究的目的是探讨亚毒性剂量泼尼松龙对CCRF-CEM细胞中BAX和BCL2基因启动子甲基化水平和基因表达的影响。
用泼尼松龙处理的细胞在标准条件下于RPMI 1640培养基中培养。在用亚毒性剂量的泼尼松龙处理规定的干预时间后,使用甲基化特异性PCR(MSP)技术分析启动子DNA甲基化的变化。
根据我们之前的研究,泼尼松龙可通过BAX和BCL2基因的改变诱导细胞凋亡。本文显示所检测基因的DNA甲基化模式没有变化;然而,泼尼松龙改变了所检测基因的表达。
泼尼松龙处理后BAX和BCL2基因的DNA甲基化模板缺乏改变,这使得泼尼松龙可能通过不同途径影响凋亡基因表达,对此还需要更多的研究。