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Genome-wide colonization of gene regulatory elements by G4 DNA motifs

机译:G4 DNA基序对基因调控元件进行全基因组定植

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摘要

G-quadruplex (or G4 DNA), a stable four-stranded structure found in guanine-rich regions, is implicated in the transcriptional regulation of genes involved in growth and development. Previous studies on the role of G4 DNA in gene regulation mostly focused on genomic regions proximal to transcription start sites (TSSs). To gain a more comprehensive understanding of the regulatory role of G4 DNA, we examined the landscape of potential G4 DNA (PG4Ms) motifs in the human genome and found that G4 motifs, not restricted to those found in the TSS-proximal regions, are bias toward gene-associated regions. Significantly, analyses of G4 motifs in seven types of well-known gene regulatory elements revealed a constitutive enrichment pattern and the clusters of G4 motifs tend to be colocalized with regulatory elements. Considering our analysis from a genome evolutionary perspective, we found evidence that the occurrence and accumulation of certain progenitors and canonical G4 DNA motifs within regulatory regions were progressively favored by natural selection. Our results suggest that G4 DNA motifs are ‘colonized’ in regulatory regions, supporting a likely genome-wide role of G4 DNA in gene regulation. We hypothesize that G4 DNA is a regulatory apparatus situated in regulatory elements, acting as a molecular switch that can modulate the role of the host functional regions, by transition in DNA structure.
机译:G-四链体(或G4 DNA)是在富含鸟嘌呤的区域发现的稳定的四链结构,与参与生长和发育的基因的转录调控有关。以前有关G4 DNA在基因调控中作用的研究主要集中在转录起始位点(TSS)附近的基因组区域。为了更全面地了解G4 DNA的调控作用,我们检查了人类基因组中潜在G4 DNA(PG4Ms)图案的格局,发现G4图案(不限于在TSS近端区域中发现的那些)具有偏向性走向基因相关区域。重要的是,分析了七种众所周知的基因调控元件中的G4基序,揭示了组成型富集模式,G4基序簇倾向于与调控元件共定位。从基因组进化的角度考虑我们的分析,我们发现证据表明某些祖先和规范性G4 DNA基序在调节区内的发生和积累逐渐受到自然选择的青睐。我们的结果表明,G4 DNA基序在调控区域被“克隆化”,支持了G4 DNA在基因调控中可能在全基因组范围内发挥作用。我们假设,G4 DNA是位于调节元件中的调节装置,它充当分子开关,可以通过DNA结构的转变来调节宿主功能区的作用。

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