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全基因组范围内 i-motif 的作图揭示了它们与人活细胞转录调控的关联。

Genome-wide mapping of i-motifs reveals their association with transcription regulation in live human cells.

机构信息

Department of Molecular Medicine, University of Padua, 35121 Padua, Italy.

Department of Cellular, Computational and Integrative Biology (CIBIO), University of Trento, 38123 Trento, Italy.

出版信息

Nucleic Acids Res. 2023 Sep 8;51(16):8309-8321. doi: 10.1093/nar/gkad626.

Abstract

i-Motifs (iMs) are four-stranded DNA structures that form at cytosine (C)-rich sequences in acidic conditions in vitro. Their formation in cells is still under debate. We performed CUT&Tag sequencing using the anti-iM antibody iMab and showed that iMs form within the human genome in live cells. We mapped iMs in two human cell lines and recovered C-rich sequences that were confirmed to fold into iMs in vitro. We found that iMs in cells are mainly present at actively transcribing gene promoters, in open chromatin regions, they overlap with R-loops, and their abundance and distribution are specific to each cell type. iMs with both long and short C-tracts were recovered, further extending the relevance of iMs. By simultaneously mapping G-quadruplexes (G4s), which form at guanine-rich regions, and comparing the results with iMs, we proved that the two structures can form in independent regions; however, when both iMs and G4s are present in the same genomic tract, their formation is enhanced. iMs and G4s were mainly found at genes with low and high transcription rates, respectively. Our findings support the in vivo formation of iM structures and provide new insights into their interplay with G4s as new regulatory elements in the human genome.

摘要

i-Motifs(iMs)是在体外酸性条件下富含胞嘧啶(C)的序列中形成的四链 DNA 结构。它们在细胞中的形成仍存在争议。我们使用抗 iM 抗体 iMab 进行了 CUT&Tag 测序,结果表明 iMs 在活细胞的人类基因组中形成。我们在两种人类细胞系中对 iMs 进行了作图,并回收了在体外证实能折叠成 iMs 的富含 C 的序列。我们发现细胞中的 iMs 主要存在于活跃转录的基因启动子处,在开放染色质区域,它们与 R 环重叠,其丰度和分布对每种细胞类型都是特异性的。我们回收了具有长和短 C 链的 iMs,进一步扩展了 iMs 的相关性。通过同时作图形成于富含鸟嘌呤区域的 G-四联体(G4s),并将结果与 iMs 进行比较,我们证明这两种结构可以形成于独立的区域;然而,当 iMs 和 G4s 都存在于同一基因组区域时,它们的形成会增强。iMs 和 G4s 主要存在于转录率低和高的基因中。我们的研究结果支持 iM 结构在体内的形成,并为它们与 G4s 作为人类基因组中新的调控元件的相互作用提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/83b5/10484731/0adac6ed8195/gkad626figgra1.jpg

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