CSIR-Institute of Genomics and Integrative Biology, New Delhi, India.
Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, India.
Elife. 2024 Aug 19;13:RP96216. doi: 10.7554/eLife.96216.
Although the role of G-quadruplex (G4) DNA structures has been suggested in chromosomal looping this was not tested directly. Here, to test causal function, an array of G4s, or control sequence that does not form G4s, were inserted within chromatin in cells. In vivo G4 formation of the inserted G4 sequence array, and not the control sequence, was confirmed using G4-selective antibody. Compared to the control insert, we observed a remarkable increase in the number of 3D chromatin looping interactions from the inserted G4 array. This was evident within the immediate topologically associated domain (TAD) and throughout the genome. Locally, recruitment of enhancer histone marks and the transcriptional coactivator p300/Acetylated-p300 increased in the G4-array, but not in the control insertion. Resulting promoter-enhancer interactions and gene activation were clear up to 5 Mb away from the insertion site. Together, these show the causal role of G4s in enhancer function and long-range chromatin interactions. Mechanisms of 3D topology are primarily based on DNA-bound architectural proteins that induce/stabilize long-range interactions. Involvement of the underlying intrinsic DNA sequence/structure in 3D looping shown here therefore throws new light on how long-range chromosomal interactions might be induced or maintained.
虽然已经提出了 G-四链体 (G4) DNA 结构在染色体环化中的作用,但这并没有被直接测试。在这里,为了测试因果功能,在细胞的染色质中插入了一系列 G4 或不形成 G4 的对照序列。使用 G4 选择性抗体证实了插入的 G4 序列阵列中的体内 G4 形成,而不是对照序列。与对照插入物相比,我们观察到从插入的 G4 阵列中 3D 染色质环化相互作用的数量显著增加。这在立即拓扑相关结构域 (TAD) 内和整个基因组中都是明显的。在局部,G4 阵列中招募了增强子组蛋白标记和转录共激活因子 p300/乙酰化-p300,但在对照插入物中没有。由此产生的启动子-增强子相互作用和基因激活甚至在距离插入位点 5Mb 处也很明显。总之,这些表明 G4 在增强子功能和长距离染色质相互作用中的因果作用。3D 拓扑结构的机制主要基于诱导/稳定长距离相互作用的 DNA 结合结构蛋白。因此,此处显示的潜在内在 DNA 序列/结构在 3D 环化中的参与为长距离染色体相互作用如何被诱导或维持提供了新的思路。