RNA Biomedical Institute, Sun Yat-sen Memorial Hospital, Zhongshan School of Medicine, Sun Yat-sen University, Guangzhou, China.
Advanced Medical Technology Center, The First Affiliated Hospital, Zhongshan School of Medicine, Sun Yat-sen University, Guangzhou, China.
Nat Struct Mol Biol. 2023 Sep;30(9):1393-1402. doi: 10.1038/s41594-023-01066-9. Epub 2023 Aug 14.
The three-dimensional structure of chromatin plays a crucial role in development and disease, both of which are associated with transcriptional changes. However, given the heterogeneity in single-cell chromatin architecture and transcription, the regulatory relationship between the three-dimensional chromatin structure and gene expression is difficult to explain based on bulk cell populations. Here we develop a single-cell, multimodal, omics method allowing the simultaneous detection of chromatin architecture and messenger RNA expression by sequencing (single-cell transcriptome sequencing (scCARE-seq)). Applying scCARE-seq to examine chromatin architecture and transcription from 2i to serum single mouse embryonic stem cells, we observe improved separation of cell clusters compared with single-cell chromatin conformation capture. In addition, after defining the cell-cycle phase of each cell through chromatin architecture extracted by scCARE-seq, we find that periodic changes in chromatin architecture occur in parallel with transcription during the cell cycle. These findings highlight the potential of scCARE-seq to facilitate comprehensive analyses that may boost our understanding of chromatin architecture and transcription in the same single cell.
染色质的三维结构在发育和疾病中起着至关重要的作用,这两者都与转录变化有关。然而,鉴于单细胞染色质结构和转录的异质性,基于细胞群体很难解释三维染色质结构与基因表达之间的调控关系。在这里,我们开发了一种单细胞、多模式、组学方法,允许通过测序同时检测染色质结构和信使 RNA 表达(单细胞转录组测序 (scCARE-seq))。我们应用 scCARE-seq 来检测 2i 到血清中的单个小鼠胚胎干细胞的染色质结构和转录,与单细胞染色质构象捕获相比,我们观察到细胞簇的分离得到了改善。此外,通过 scCARE-seq 提取的染色质结构来定义每个细胞的细胞周期阶段后,我们发现染色质结构在细胞周期中与转录平行发生周期性变化。这些发现强调了 scCARE-seq 促进全面分析的潜力,这可能有助于我们在同一单细胞中理解染色质结构和转录。