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Adenine Methylation in Drosophila Is Associated with the Tissue-Specific Expression of Developmental and Regulatory Genes

机译:果蝇中的腺嘌呤甲基化与发育和调控基因的组织特异性表达有关。

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摘要

N6-methyladenine (6mA or m6dA) is a DNA modification that has long been known to play an important role in a variety of biological functions in prokaryotes. This modification has only recently been described in eukaryotes, where it seems to have evolved species-specific functions ranging from nucleosome positioning to transposon repression. In Drosophila, 6mA has been shown to be important for enforcing the tissue specificity of neuronal genes in the brain and suppressing transposable element expression in the ovaries. In this study, we have analyzed the raw signal data from nanopore sequencing to identify 6mA positions in the D. melanogaster genome at single-base resolution. We find that this modification is enriched upstream from transcription start sites, within the introns and 3′ UTRs of genes, as well as in simple repeats. These 6mA positions are enriched for sequence motifs that are recognized by known transcriptional activators involved in development, such as Bicoid and Caudal, and the genes that carry this modification are enriched for functions involved in development, regulation of transcription, and neuronal activity. These genes show high expression specificity in a variety of tissues besides the brain, suggesting that this modification may play a more general role in enforcing the specificity of gene expression across many tissues, throughout development, and between the sexes.
机译:N6-甲基腺嘌呤(6mA或m6dA)是一种DNA修饰,早就知道它在原核生物的多种生物学功能中起着重要作用。这种修饰直到最近才在真核生物中得到描述,其中它似乎已经进化出了特定物种的功能,范围从核小体定位到转座子抑制。在果蝇中,已证明6mA对于增强脑中神经元基因的组织特异性和抑制卵巢中的转座因子表达很重要。在这项研究中,我们分析了纳米孔测序的原始信号数据,以单碱基分辨率鉴定了D. melanogaster基因组中的6mA位置。我们发现这种修饰在基因的内含子和3'UTR内以及从简单重复序列的转录起始位点上游富集。这些6mA位置富含被参与发育的已知转录激活因子(如Bicoid和Caudal)识别的序列基序,带有这种修饰的基因也富集了参与发育,转录调节和神经元活性的功能。这些基因在除大脑外的各种组织中均显示出高表达特异性,这表明这种修饰在加强整个组织,整个发育过程以及两性之间的基因表达特异性方面可能发挥更普遍的作用。

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