DNA甲基转移酶缺乏引起的DNA低甲基化转录终止位点特异性基因位点异常转录终止的鉴定。

IF 1 4区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Genes & genetic systems Pub Date : 2022-10-18 Epub Date: 2022-09-06 DOI:10.1266/ggs.21-00092
Masaki Shirai, Takuya Nara, Haruko Takahashi, Kazuya Takayama, Yuan Chen, Yudai Hirose, Masashi Fujii, Akinori Awazu, Nobuyoshi Shimoda, Yutaka Kikuchi
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引用次数: 0

摘要

基因组DNA的CpG甲基化是真核生物转录中一个众所周知的抑制表观遗传标记,而启动子区域的DNA甲基化与基因沉默有关。与启动子区域相反,DNA甲基化在转录终止过程中的功能仍有待阐明。最近的一项研究表明,小鼠DNA甲基转移酶3a (Dnmt3a)主要在发育过程中启动子和基因体区域(包括转录终止位点(TTSs))的从头甲基化中起作用。为了研究DNA甲基化与TTSs重叠与转录终止之间的关系,我们使用六种已有的Dnmt-/-小鼠细胞数据集进行了生物信息学分析:四种神经元(三种Dnmt3a-/-和一种Dnmt1-/-突变体)和两种胚胎成纤维细胞(Dnmt3a-/-和Dnmt3b-/-突变体)。使用甲基组和转录组数据的联合分析显示,三种类型的神经元(两种Dnmt3a-/-和一种Dnmt1-/-突变体)中低甲基化tss下游的读取计数增加。其中,在Dnmt3a-/-成熟嗅觉感觉神经元和Dnmt3a-/-针刺相关肽(蛋白)产生神经元中,TTSs下游嵌合转录物增加,这表明在这两个突变体中,特定基因位点的低甲基化TTSs发生了通读。相反,在Dnmt3a-/- mef中,我们检测到低甲基化tss下游的读取计数减少。这些结果表明,TTSs的低甲基化可以正或负调节转录终止,这取决于Dnmt和细胞类型。这项研究首次发现了Dnmt缺乏导致的DNA低甲基化tss在特定基因位点的转录异常终止。
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Identification of aberrant transcription termination at specific gene loci with DNA hypomethylated transcription termination sites caused by DNA methyltransferase deficiency.

CpG methylation of genomic DNA is a well-known repressive epigenetic marker in eukaryotic transcription, and DNA methylation of promoter regions is correlated with gene silencing. In contrast to the promoter regions, the function of DNA methylation during transcription termination remains to be elucidated. A recent study revealed that mouse DNA methyltransferase 3a (Dnmt3a) mainly functions in de novo methylation in the promoter and gene body regions, including transcription termination sites (TTSs), during development. To investigate the relationship between DNA methylation overlapping the TTSs and transcription termination, we performed bioinformatics analysis using six pre-existing Dnmt-/- mouse cell datasets: four types of neurons (three Dnmt3a-/- and one Dnmt1-/- mutants) and two types of embryonic fibroblasts (MEFs) (Dnmt3a-/- and Dnmt3b-/- mutants). Combined analyses using methylome and transcriptome data revealed that read counts downstream of hypomethylated TTSs were increased in three types of neurons (two Dnmt3a-/- and one Dnmt1-/- mutants). Among these, an increase in chimeric transcripts downstream of the TTSs was observed in Dnmt3a-/- mature olfactory sensory neurons and Dnmt3a-/- agouti-related peptide (protein)-producing neurons, thereby indicating that read-through occurs in hypomethylated TTSs at specific gene loci in these two mutants. Conversely, in Dnmt3a-/- MEFs, we detected reductions in read counts downstream of hypomethylated TTSs. These results indicate that the hypomethylation of TTSs can both positively and negatively regulate transcription termination, dependent on Dnmt and cell types. This study is the first to identify the aberrant termination of transcription at specific gene loci with DNA hypomethylated TTSs attributable to Dnmt deficiency.

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来源期刊
Genes & genetic systems
Genes & genetic systems 生物-生化与分子生物学
CiteScore
1.50
自引率
0.00%
发文量
22
审稿时长
>12 weeks
期刊介绍: Genes & Genetic Systems , formerly the Japanese Journal of Genetics , is published bimonthly by the Genetics Society of Japan.
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