Aspirin Mediates Its Antitumoral Effect Through Inhibiting PTTG1 in Pituitary Adenoma.

Borbála Szabó, Kinga Németh, Katalin Mészáros, Lilla Krokker, István Likó, Éva Saskői, Krisztina Németh, Pál Tamás Szabó, Nikolette Szücs, Sándor Czirják, Gábor Szalóki, Attila Patócs, Henriett Butz
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引用次数: 3

Abstract

Context: DNA demethylation and inhibitory effects of aspirin on pituitary cell proliferation have been demonstrated.

Objective: Our aim was to clarify the molecular mechanisms behind the aspirin-related effects in pituitary cells.

Methods: DNA methylome and whole transcriptome profile were investigated in RC-4B/C and GH3 pituitary cell lines upon aspirin treatment. Effects of aspirin and a demethylation agent, decitabine, were further tested in vitro. PTTG1 expression in 41 human PitNET samples and whole genome gene and protein expression data of 76 PitNET and 34 control samples (available in Gene Expression Omnibus) were evaluated.

Results: Aspirin induced global DNA demethylation and consequential transcriptome changes. Overexpression of Tet enzymes and their cofactor Uhrf2 were identified behind the increase of 5-hydroxymethylcytosine (5hmC). Besides cell cycle, proliferation, and migration effects that were validated by functional experiments, aspirin increased Tp53 activity through p53 acetylation and decreased E2f1 activity. Among the p53 controlled genes, Pttg1 and its interacting partners were downregulated upon aspirin treatment by inhibiting Pttg1 promoter activity. 5hmC positively correlated with Tet1-3 and Tp53 expression, and negatively correlated with Pttg1 expression, which was reinforced by the effect of decitabine. Additionally, high overlap (20.15%) was found between aspirin-regulated genes and dysregulated genes in PitNET tissue samples.

Conclusion: A novel regulatory network has been revealed, in which aspirin regulated global demethylation, Tp53 activity, and Pttg1 expression along with decreased cell proliferation and migration. 5hmC, a novel tissue biomarker in PitNET, indicated aspirin antitumoral effect in vitro as well. Our findings suggest the potential beneficial effect of aspirin in PitNET.

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阿司匹林通过抑制垂体腺瘤PTTG1介导其抗肿瘤作用。
背景:DNA去甲基化和阿司匹林对垂体细胞增殖的抑制作用已被证实。目的:我们的目的是阐明阿司匹林对垂体细胞相关作用的分子机制。方法:研究阿司匹林对RC-4B/C和GH3垂体细胞株的DNA甲基化和全转录组谱的影响。阿司匹林和去甲基化剂地西他滨的作用进一步在体外测试。对41个人类PitNET样本中PTTG1的表达以及76个PitNET样本和34个对照样本(可在gene expression Omnibus中获得)的全基因组基因和蛋白表达数据进行了评估。结果:阿司匹林诱导整体DNA去甲基化和相应的转录组改变。Tet酶及其辅助因子Uhrf2在5-羟甲基胞嘧啶(5hmC)升高的背后被鉴定为过表达。除了功能实验证实的细胞周期、增殖和迁移作用外,阿司匹林还通过p53乙酰化提高Tp53活性,降低E2f1活性。在p53控制基因中,Pttg1及其相互作用伙伴在阿司匹林治疗后通过抑制Pttg1启动子活性而下调。5hmC与Tet1-3、Tp53表达呈正相关,与Pttg1表达负相关,地西他滨的作用强化了这一关系。此外,在PitNET组织样本中发现阿司匹林调节基因和失调基因之间存在高度重叠(20.15%)。结论:揭示了一个新的调控网络,其中阿司匹林调节全局去甲基化、Tp53活性和Pttg1表达,同时降低细胞增殖和迁移。5hmC是PitNET中一个新的组织生物标志物,在体外也显示了阿司匹林的抗肿瘤作用。我们的研究结果表明阿司匹林对PitNET有潜在的有益作用。
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