Jean S Fain, Camille Wangermez, Axelle Loriot, Claudia Denoue, Charles De Smet
{"title":"DNA低甲基化是肿瘤中AGO1和AGO1-V2异构体表观遗传交换的基础","authors":"Jean S Fain, Camille Wangermez, Axelle Loriot, Claudia Denoue, Charles De Smet","doi":"10.3390/epigenomes8030024","DOIUrl":null,"url":null,"abstract":"<p><p>Human tumors progress in part by accumulating epigenetic alterations, which include gains and losses of DNA methylation in different parts of the cancer cell genome. Recent work has revealed a link between these two opposite alterations by showing that DNA hypomethylation in tumors can induce the expression of transcripts that overlap downstream gene promoters and thereby induce their hypermethylation. Preliminary in silico evidence prompted us to investigate if this mechanism applies to the locus harboring <i>AGO1</i>, a gene that plays a central role in miRNA biogenesis and RNA interference. Inspection of public RNA-Seq datasets and RT-qPCR experiments show that an alternative transcript starting 13.4 kb upstream of <i>AGO1</i> (<i>AGO1-V2</i>) is expressed specifically in testicular germ cells, and becomes aberrantly activated in different types of tumors, particularly in tumors of the esophagus, stomach, and lung. This expression pattern classifies <i>AGO1-V2</i> into the group of \"Cancer-Germline\" (CG) genes. Analysis of transcriptomic and methylomic datasets provided evidence that transcriptional activation of <i>AGO1-V2</i> depends on DNA demethylation of its promoter region. Western blot experiments revealed that <i>AGO1-V2</i> encodes a shortened isoform of AGO1, corresponding to a truncation of 75 aa in the N-terminal domain, and which we therefore referred to as \"∆NAGO1\". Interestingly, significant correlations between hypomethylation/activation of <i>AGO1-V2</i> and hypermethylation/repression of <i>AGO1</i> were observed upon examination of tumor cell lines and tissue datasets. Overall, our study reveals the existence of a process of interdependent epigenetic alterations in the <i>AGO1</i> locus, which promotes swapping between two AGO1 protein-coding mRNA isoforms in tumors.</p>","PeriodicalId":55768,"journal":{"name":"Epigenomes","volume":"8 3","pages":""},"PeriodicalIF":2.5000,"publicationDate":"2024-06-22","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://www.ncbi.nlm.nih.gov/pmc/articles/PMC11270204/pdf/","citationCount":"0","resultStr":"{\"title\":\"DNA Hypomethylation Underlies Epigenetic Swapping between <i>AGO1</i> and <i>AGO1-V2</i> Isoforms in Tumors.\",\"authors\":\"Jean S Fain, Camille Wangermez, Axelle Loriot, Claudia Denoue, Charles De Smet\",\"doi\":\"10.3390/epigenomes8030024\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>Human tumors progress in part by accumulating epigenetic alterations, which include gains and losses of DNA methylation in different parts of the cancer cell genome. Recent work has revealed a link between these two opposite alterations by showing that DNA hypomethylation in tumors can induce the expression of transcripts that overlap downstream gene promoters and thereby induce their hypermethylation. Preliminary in silico evidence prompted us to investigate if this mechanism applies to the locus harboring <i>AGO1</i>, a gene that plays a central role in miRNA biogenesis and RNA interference. Inspection of public RNA-Seq datasets and RT-qPCR experiments show that an alternative transcript starting 13.4 kb upstream of <i>AGO1</i> (<i>AGO1-V2</i>) is expressed specifically in testicular germ cells, and becomes aberrantly activated in different types of tumors, particularly in tumors of the esophagus, stomach, and lung. This expression pattern classifies <i>AGO1-V2</i> into the group of \\\"Cancer-Germline\\\" (CG) genes. Analysis of transcriptomic and methylomic datasets provided evidence that transcriptional activation of <i>AGO1-V2</i> depends on DNA demethylation of its promoter region. Western blot experiments revealed that <i>AGO1-V2</i> encodes a shortened isoform of AGO1, corresponding to a truncation of 75 aa in the N-terminal domain, and which we therefore referred to as \\\"∆NAGO1\\\". Interestingly, significant correlations between hypomethylation/activation of <i>AGO1-V2</i> and hypermethylation/repression of <i>AGO1</i> were observed upon examination of tumor cell lines and tissue datasets. 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引用次数: 0
摘要
人类肿瘤进展的部分原因是表观遗传学改变的累积,其中包括癌细胞基因组不同部位 DNA 甲基化的增减。最近的研究表明,肿瘤中的 DNA 低甲基化可诱导下游基因启动子重叠的转录本表达,从而诱导其高甲基化,从而揭示了这两种相反改变之间的联系。初步硅学证据促使我们研究这一机制是否适用于AGO1基因座,该基因在miRNA生物发生和RNA干扰中发挥着核心作用。对公开的 RNA-Seq 数据集和 RT-qPCR 实验的检测表明,从 AGO1 上游 13.4 kb 开始的另一个转录本(AGO1-V2)在睾丸生殖细胞中特异性表达,并在不同类型的肿瘤中异常激活,尤其是在食道、胃和肺部肿瘤中。这种表达模式将 AGO1-V2 归入 "癌症-胚系"(CG)基因组。对转录组和甲基组数据集的分析证明,AGO1-V2 的转录激活取决于其启动子区域的 DNA 去甲基化。Western 印迹实验显示,AGO1-V2 编码 AGO1 的缩短异构体,相当于 N 端结构域截短 75 aa,因此我们将其称为"∆NGO1"。有趣的是,在对肿瘤细胞系和组织数据集进行检测后发现,AGO1-V2 的低甲基化/激活与 AGO1 的高甲基化/抑制之间存在明显的相关性。总之,我们的研究揭示了 AGO1 基因座存在一个相互依存的表观遗传学改变过程,它促进了肿瘤中两种 AGO1 蛋白编码 mRNA 异构体之间的交换。
DNA Hypomethylation Underlies Epigenetic Swapping between AGO1 and AGO1-V2 Isoforms in Tumors.
Human tumors progress in part by accumulating epigenetic alterations, which include gains and losses of DNA methylation in different parts of the cancer cell genome. Recent work has revealed a link between these two opposite alterations by showing that DNA hypomethylation in tumors can induce the expression of transcripts that overlap downstream gene promoters and thereby induce their hypermethylation. Preliminary in silico evidence prompted us to investigate if this mechanism applies to the locus harboring AGO1, a gene that plays a central role in miRNA biogenesis and RNA interference. Inspection of public RNA-Seq datasets and RT-qPCR experiments show that an alternative transcript starting 13.4 kb upstream of AGO1 (AGO1-V2) is expressed specifically in testicular germ cells, and becomes aberrantly activated in different types of tumors, particularly in tumors of the esophagus, stomach, and lung. This expression pattern classifies AGO1-V2 into the group of "Cancer-Germline" (CG) genes. Analysis of transcriptomic and methylomic datasets provided evidence that transcriptional activation of AGO1-V2 depends on DNA demethylation of its promoter region. Western blot experiments revealed that AGO1-V2 encodes a shortened isoform of AGO1, corresponding to a truncation of 75 aa in the N-terminal domain, and which we therefore referred to as "∆NAGO1". Interestingly, significant correlations between hypomethylation/activation of AGO1-V2 and hypermethylation/repression of AGO1 were observed upon examination of tumor cell lines and tissue datasets. Overall, our study reveals the existence of a process of interdependent epigenetic alterations in the AGO1 locus, which promotes swapping between two AGO1 protein-coding mRNA isoforms in tumors.