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Downregulation of HO-1 promoted apoptosis induced by decitabine via increasing p15(INK4B) promoter demethylation in myelodysplastic syndrome

机译:下调HO-1促进地西他滨诱导的骨髓增生异常综合征中p15(INK4B)启动子去甲基化诱导的细胞凋亡

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摘要

Decitabine, which reverses hypermethylation of the p15(INK4B) gene in vitro, has been used to relieve cytopenias and blast excess in over 50% of patients with high-risk myelodysplastic syndrome (MDS). In this study, heme oxygenase-1 (HO-1) was overexpressed in MDS cell line SKM-1, which was closely related to resistance to decitabine-induced apoptosis. We aimed to further investigate the role of HO-1 in apoptosis induced by low-dose decitabine in SKM-1 cells. Upregulation of HO-1 by transfecting it into SKM-1 cells with lentivirus vector promoted cell proliferation and protected them against apoptosis. In contrast, downregulation of HO-1 enhanced decitabine-induced apoptosis but reduced accumulation of the S phase in cell cycle. To explore the mechanism, the expressions of cell cycle-related proteins were detected after the cells were treated by decitabine in each group. p15(INK4B) and CDK4 were overexpressed in SKM-1 cells in which HO-1 was inhibited, and the expression-depending apoptosis was related to the caspase-3 pathway. Even though HO-1 was silenced, the apoptotic rate never increased as the caspase-3 pathway was blocked. It is well known that p15(INK4B) dominantly regulates the S phase of the cell cycle. p15(INK4B) was herein demethylated more evidently in the group of SKM-1 cells in which HO-1 was downregulated, as well as in the mononuclear cells of patients suffering from MDS. In the case of poor prognosis, the mRNA level of HO-1 was raised. In conclusion, overexpression of HO-1 indicated resistance to demethylation of p15(INK4B) induced by decitabine.
机译:地西他滨在体外可逆转p15(INK4B)基因的高度甲基化,已被用于缓解50%以上高危骨髓增生异常综合征(MDS)患者的血细胞减少和原始细胞过量。在这项研究中,血红素加氧酶-1(HO-1)在MDS细胞系SKM-1中过表达,与抗地西他滨诱导的细胞凋亡密切相关。我们旨在进一步研究HO-1在低剂量地西他滨诱导SKM-1细胞凋亡中的作用。通过用慢病毒载体将HO-1转染到SKM-1细胞中来上调HO-1可以促进细胞增殖并保护其免受凋亡。相反,HO-1的下调增强了地西他滨诱导的细胞凋亡,但减少了细胞周期中S期的积累。为了探讨其机制,在每组中用地西他滨处理细胞后检测细胞周期相关蛋白的表达。 p15(INK4B)和CDK4在HO-1被抑制的SKM-1细胞中过表达,其表达依赖的凋亡与caspase-3途径有关。即使HO-1被沉默,凋亡率也从未增加,因为caspase-3通路被阻断。众所周知,p15(INK4B)主要调节细胞周期的S期。在其中HO-1被下调的SKM-1细胞组中以及在患有MDS的患者的单核细胞中,p15(INK4B)在本文中更明显地去甲基化。在预后不良的情况下,HO-1的mRNA水平升高。总之,HO-1的过表达表明对地西他滨诱导的p15(INK4B)脱甲基有抗性。

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