Teng Xucong, Dai Yicong, Li Ke, Wu Yuncong, Hou Hongwei, Li Jinghong
Department of Chemistry, Key Laboratory of Bioorganic Phosphorus Chemistry & Chemical Biology, Tsinghua University, Beijing, 100084, China.
Center for BioAnalytical Chemistry, Hefei National Laboratory of Physical Science at Microscale, University of Science and Technology of China, Hefei, 230026, China.
Small Methods. 2023 Apr;7(4):e2201487. doi: 10.1002/smtd.202201487. Epub 2023 Feb 5.
G-quadruplex (G4) structures exist in the single-stranded DNA of chromatin and regulate genome function. However, the native chromatin G4 landscape in living cells has yet to be fully characterized. Herein, a genetic-encoded live-cell G4 identifier probe (LiveG4ID) is constructed and its cellular localization, biocompatibility, and G4-binding specificity is evaluated. By coupling LiveG4ID with cleavage under targets and tagmentation (CUT&Tag), LiveG4ID-seq, a method for mapping native chromatin G4 landscape in living cells with high accuracy is established. Compared to the conventional G4 CUT&Tag method, LiveG4ID-seq can identify more chromatin G4 signals and have a higher ratio of true positive signals. Using LiveG4ID-seq, the dynamic landscape of chromatin G4 structures during the cell cycle is profiled. It is discovered that chromatin G4 structures are prevalent in the promoter regions of cell cycle-specific genes, even in the early M phase when the chromatin is condensed. These data demonstrate the capacity of LiveG4ID-seq to profile a more accurate G4 landscape in living cells and promote future studies on chromatin G4 structures.
G-四链体(G4)结构存在于染色质的单链DNA中并调节基因组功能。然而,活细胞中天然染色质G4图谱尚未得到充分表征。在此,构建了一种基因编码的活细胞G4标识符探针(LiveG4ID),并评估了其细胞定位、生物相容性和G4结合特异性。通过将LiveG4ID与靶向切割和转座酶可及染色质测序(CUT&Tag)相结合,建立了LiveG4ID-seq,一种用于高精度绘制活细胞中天然染色质G4图谱的方法。与传统的G4 CUT&Tag方法相比,LiveG4ID-seq可以识别更多的染色质G4信号,并且真阳性信号比例更高。使用LiveG4ID-seq,描绘了细胞周期中染色质G4结构的动态图谱。研究发现,染色质G4结构在细胞周期特异性基因的启动子区域普遍存在,即使在染色质浓缩的M期早期也是如此。这些数据证明了LiveG4ID-seq在活细胞中描绘更准确的G4图谱的能力,并促进了未来对染色质G4结构的研究。