Genome-wide impact of cytosine methylation and DNA sequence context on UV-induced CPD formation

IF 2.3 4区 医学 Q3 ENVIRONMENTAL SCIENCES Environmental and Molecular Mutagenesis Pub Date : 2023-08-09 DOI:10.1002/em.22569
Hannah E. Wilson, John J. Wyrick
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Abstract

Exposure to ultraviolet (UV) light is the primary etiological agent for skin cancers because UV damages cellular DNA. The most frequent form of UV damage is the cyclobutane pyrimidine dimer (CPD), which consists of covalent linkages between neighboring pyrimidine bases in DNA. In human cells, the 5′ position of cytosine bases in CG dinucleotides is frequently methylated, and methylated cytosines in the TP53 tumor suppressor are often sites of mutation hotspots in skin cancers. It has been argued that this is because cytosine methylation promotes UV-induced CPD formation; however, the effects of cytosine methylation on CPD formation are controversial, with conflicting results from previous studies. Here, we use a genome-wide method known as CPD-seq to map UVB- and UVC-induced CPDs across the yeast genome in the presence or absence in vitro methylation by the CpG methyltransferase M.SssI. Our data indicate that cytosine methylation increases UVB-induced CPD formation nearly 2-fold relative to unmethylated DNA, but the magnitude of induction depends on the flanking sequence context. Sequence contexts with a 5′ guanine base (e.g., GCCG and GTCG) show the strongest induction due to cytosine methylation, potentially because these sequence contexts are less efficient at forming CPD lesions in the absence of methylation. We show that cytosine methylation also modulates UVC-induced CPD formation, albeit to a lesser extent than UVB. These findings can potentially reconcile previous studies, and define the impact of cytosine methylation on UV damage across a eukaryotic genome.

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胞嘧啶甲基化和DNA序列背景对紫外线诱导CPD形成的全基因组影响。
暴露在紫外线下是皮肤癌的主要病因,因为紫外线会破坏细胞DNA。最常见的紫外线损伤形式是环丁烷嘧啶二聚体(CPD),它由DNA中相邻嘧啶碱基之间的共价键组成。在人类细胞中,CG二核苷酸中胞嘧啶碱基的5′位置经常发生甲基化,而TP53肿瘤抑制因子中甲基化的胞嘧啶往往是皮肤癌的突变热点位点。有人认为这是因为胞嘧啶甲基化促进了紫外线诱导的CPD形成;然而,胞嘧啶甲基化对CPD形成的影响是有争议的,与以往的研究结果相互矛盾。在这里,我们使用一种称为CPD-seq的全基因组方法来绘制UVB-和uvc诱导的cpd在酵母基因组中存在或不存在CpG甲基转移酶m.s si体外甲基化的情况。我们的数据表明,相对于未甲基化的DNA,胞嘧啶甲基化使uvb诱导的CPD形成增加近2倍,但诱导程度取决于侧翼序列背景。具有5'鸟嘌呤碱基的序列背景(例如GCCG和GTCG)显示出胞嘧啶甲基化的最强诱导,可能是因为这些序列背景在没有甲基化的情况下形成CPD病变的效率较低。我们发现,胞嘧啶甲基化也调节uvc诱导的CPD形成,尽管程度低于UVB。这些发现可能与之前的研究相一致,并确定胞嘧啶甲基化对真核生物基因组紫外线损伤的影响。
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来源期刊
CiteScore
5.40
自引率
10.70%
发文量
52
审稿时长
12-24 weeks
期刊介绍: Environmental and Molecular Mutagenesis publishes original research manuscripts, reviews and commentaries on topics related to six general areas, with an emphasis on subject matter most suited for the readership of EMM as outlined below. The journal is intended for investigators in fields such as molecular biology, biochemistry, microbiology, genetics and epigenetics, genomics and epigenomics, cancer research, neurobiology, heritable mutation, radiation biology, toxicology, and molecular & environmental epidemiology.
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