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Silencing of Glutathione Peroxidase 3 through DNA Hypermethylation Is Associated with Lymph Node Metastasis in Gastric Carcinomas

机译:通过DNa甲基关联有淋巴结转移的胃癌组织中谷胱甘肽过氧化物酶3沉默

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摘要

Gastric cancer remains the second leading cause of cancer-related death in the world. H. pylori infection, a major risk factor for gastric cancer, generates high levels of reactive oxygen species (ROS). Glutathione peroxidase 3 (GPX3), a plasma GPX member and a major scavenger of ROS, catalyzes the reduction of hydrogen peroxide and lipid peroxides by reduced glutathione. To study the expression and gene regulation of GPX3, we examined GPX3 gene expression in 9 gastric cancer cell lines, 108 primary gastric cancer samples and 45 normal gastric mucosa adjacent to cancers using quantitative real-time RT-PCR. Downregulation or silencing of GPX3 was detected in 8 of 9 cancer cell lines, 83% (90/108) gastric cancers samples, as compared to non-tumor adjacent normal gastric samples (P<0.0001). Examination of GPX3 promoter demonstrated DNA hypermethylation (≥10% methylation level determined by Bisulfite Pyrosequencing) in 6 of 9 cancer cell lines and 60% of gastric cancer samples (P = 0.007). We also detected a significant loss of DNA copy number of GPX3 in gastric cancers (P<0.001). Treatment of SNU1 and MKN28 cells with 5-Aza-2′ Deoxycytidine restored the GPX3 gene expression with a significant demethylation of GPX3 promoter. The downregulation of GPX3 expression and GPX3 promoter hypermethylation were significantly associated with gastric cancer lymph node metastasis (P = 0.018 and P = 0.029, respectively). We also observed downregulation, DNA copy number losses, and promoter hypermethylation of GPX3 in approximately one-third of tumor-adjacent normal gastric tissue samples, suggesting the presence of a field defect in areas near tumor samples. Reconstitution of GPX3 in AGS cells reduced the capacity of cell migration, as measured by scratch wound healing assay. Taken together, the dysfunction of GPX3 in gastric cancer is mediated by genetic and epigenetic alterations, suggesting impairment of mechanisms that regulate ROS and its possible involvement in gastric tumorigenesis and metastasis.
机译:胃癌仍然是世界上与癌症相关的死亡的第二大主要原因。幽门螺杆菌感染是胃癌的主要危险因素,会产生高水平的活性氧(ROS)。谷胱甘肽过氧化物酶3(GPX3)是血浆GPX成员,也是ROS的主要清除剂,它通过还原型谷胱甘肽来催化过氧化氢和脂质过氧化物的还原。为了研究GPX3的表达和基因调控,我们使用定量实时RT-PCR检测了GPX3基因在9个胃癌细胞系,108个原发性胃癌样品和45个癌旁正常胃黏膜中的表达。与非肿瘤相邻正常胃样本相比,在9个癌细胞系中的8个中,有83%(90/108)胃癌样本中检测到GPX3的下调或沉默(P <0.0001)。对GPX3启动子的检查表明,在9个癌细胞系中的6个和60%的胃癌样品中,DNA超甲基化(通过亚硫酸氢盐焦磷酸测序法测定的甲基化水平≥10%)(P = 0.007)。我们还检测到胃癌中GPX3的DNA拷贝数明显减少(P <0.001)。用5-Aza-2'脱氧胞苷处理SNU1和MKN28细胞可通过GPX3启动子的显着去甲基化恢复GPX3基因的表达。 GPX3表达的下调和GPX3启动子的高甲基化与胃癌淋巴结转移密切相关(分别为P = 0.018和P = 0.029)。我们还观察到大约三分之一的肿瘤邻近正常胃组织样品中GPX3的下调,DNA拷贝数丢失和启动子甲基化过高,提示在肿瘤样品附近的区域中存在电场缺陷。通过刮擦伤口愈合测定法测量,AGS细胞中GPX3的重建降低了细胞迁移的能力。两者合计,胃癌中GPX3的功能障碍是由遗传和表观遗传学改变介导的,提示调节ROS的机制受损及其可能参与胃癌的发生和转移。

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