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Relationship of impairment induced by intracellular S-adenosylhomocysteine accumulation with DNA methylation in human umbilical vein endothelial cells treated with 3-deazaadenosine

机译:3-deazaadenosine处理人脐静脉内皮细胞中细胞内S-腺苷同型半胱氨酸蓄积所致损伤与DNA甲基化的关系

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摘要

The aim of this study was to estimate the relationship of endothelial dysfunction induced by intracellular S-adenosylhomocysteine (SAH) accumulation and DNA methylation in human umbilical vein endothelial cells (HUVEC). The isolated HUVEC were incubated with 3-deazaadenosine (DZA) to induce experimental intracellular SAH accumulation. The impairment of HUVEC function was assessed by changes in morphology and proliferative ability. The expression of DNA methyltransferase-1 (DNMT1) and the atherosclerosis related genes [oestrogen receptor-alpha (ER-α), extracellular superoxide dismutase (EC-SOD) and monocyte chemoattractant protein-1 (MCP-1)] were analysed using quantitative real-time PCR. Global DNA methylated status was measured using the cytosine extension assay. The methylated patterns of ER-α, EC-SOD and MCP-1 genes were determined with methylation-specific PCR. We found that DZA administration increased intracellular SAH levels progressively and simultaneously decreased Hcy content in medium. Moreover, the supplementation induced HUVEC apoptosis, inhibited proliferation ability and DNMT1 mRNA expression (P<0.05) and furthermore reduced global DNA methylation status (P<0.05). Correlation analysis showed the presence of a negative correlation between intracellular SAH concentration, proliferative ability, and expression of ER-α, EC-SOD, and DNMT1 (r = −0.89, −0.86, −0.92 and −0.88 respectively, P<0.001); and a positive correlation with MCP-1 expression and DNA [3H]-dCTP incorporation (r = 0.89 and 0.93 respectively, P<0.001). Our results showed that endothelial dysfunction induced by intracellular SAH accumulation is mediated by regulating the expression of atherosclerosis related genes in HUVEC, which is not related with gene promoter methylated patterns, but may be associated with altered global DNA hypomethylated status. These findings suggest that SAH can act as the potential molecular biological marker in the promotion of atherogenesis.
机译:这项研究的目的是估计由细胞内S-腺苷同型半胱氨酸(SAH)积累和人脐静脉内皮细胞(HUVEC)DNA甲基化诱导的内皮功能障碍之间的关系。将分离的HUVEC与3-脱氮基腺苷(DZA)一起孵育以诱导实验性细胞内SAH积累。通过形态和增殖能力的变化评估HUVEC功能的损害。使用定量方法分析了DNA甲基转移酶-1(DNMT1)和动脉粥样硬化相关基因[雌激素受体-α(ER-α),细胞外超氧化物歧化酶(EC-SOD)和单核细胞趋化蛋白-1(MCP-1)]的表达。实时PCR。使用胞嘧啶延伸测定法测量总体DNA甲基化状态。用甲基化特异性PCR确定ER-α,EC-SOD和MCP-1基因的甲基化模式。我们发现DZA管理逐步增加细胞内SAH水平,同时降低培养基中的Hcy含量。此外,该添加物诱导HUVEC凋亡,抑制增殖能力和DNMT1 mRNA表达(P <0.05),并进一步降低了总体DNA甲基化状态(P <0.05)。相关分析表明,细胞内SAH浓度,增殖能力与ER-α,EC-SOD和DNMT1的表达呈负相关(r分别为-0.89,-0.86,-0.92和-0.88,P <0.001) ;与MCP-1表达和DNA [ 3 H] -dCTP掺入呈正相关(r分别为0.89和0.93,P <0.001)。我们的研究结果表明,细胞内SAH积累引起的内皮功能障碍是通过调节HUVEC中动脉粥样硬化相关基因的表达来介导的,这与基因启动子甲基化模式无关,但可能与整体DNA低甲基化状态的改变有关。这些发现表明,SAH可以作为促进动脉粥样硬化发生的潜在分子生物学标记。

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