We present replication-aware single-molecule accessibility mapping (RASAM), a method to nondestructively measure replication status and protein-DNA interactions on chromatin genome-wide. Using RASAM, we uncover a genome-wide state of single-molecule "hyperaccessibility" post-replication that resolves over several hours. Combining RASAM with cellular models for rapid protein degradation, we demonstrate that histone chaperone CAF-1 reduces nascent chromatin accessibility by filling single-molecular "gaps" and generating closely spaced dinucleosomes on replicated DNA. At cis-regulatory elements, we observe unique modes by which nascent chromatin hyperaccessibility resolves: at CCCTC-binding factor (CTCF)-binding sites, CTCF and nucleosomes compete, reducing CTCF occupancy and motif accessibility post-replication; at active transcription start sites, high chromatin accessibility is maintained, implying rapid re-establishment of nucleosome-free regions. Our study introduces a new paradigm for studying replicated chromatin fiber organization. More broadly, we uncover a unique organization of newly replicated chromatin that must be reset by active processes, providing a substrate for epigenetic reprogramming.
The single-molecule accessibility landscape of newly replicated mammalian chromatin.
新复制的哺乳动物染色质的单分子可及性图谱
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作者:Ostrowski Megan S, Yang Marty G, McNally Colin P, Abdulhay Nour J, Wang Simai, Renduchintala Keerthi, Irkliyenko Iryna, Biran Alva, Chew Brandon T L, Midha Ayush D, Wong Emily V, Sandoval Jonathan, Jain Isha H, Groth Anja, Nora Elphège P, Goodarzi Hani, Ramani Vijay
| 期刊: | Cell | 影响因子: | 42.500 |
| 时间: | 2025 | 起止号: | 2025 Jan 9; 188(1):237-252 |
| doi: | 10.1016/j.cell.2024.10.039 | ||
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