染色质
生物物理学
组蛋白
化学
过渡(遗传学)
冷凝
细胞生物学
DNA
生物
生物化学
物理
基因
热力学
作者
Tengfei Wang,Shuxiang Shi,Yuanyuan Shi,Peipei Jiang,Ganlu Hu,Qinying Ye,Zhan Shi,Ke‐Xin Yu,Chenguang Wang,Guoping Fan,Suwen Zhao,Hanhui Ma,Alex Chia Yu Chang,Zhi Li,Qian Bian,Chao‐Po Lin
标识
DOI:10.1038/s41467-023-41340-4
摘要
Abstract Chemicals or drugs can accumulate within biomolecular condensates formed through phase separation in cells. Here, we use super-resolution imaging to search for chemicals that induce phase transition within chromatin at the microscale. This microscopic screening approach reveals that adriamycin (doxorubicin) — a widely used anticancer drug that is known to interact with chromatin — specifically induces visible local condensation and global conformational change of chromatin in cancer and primary cells. Hi-C and ATAC-seq experiments systematically and quantitatively demonstrate that adriamycin-induced chromatin condensation is accompanied by weakened chromatin interaction within topologically associated domains, compartment A/B switching, lower chromatin accessibility, and corresponding transcriptomic changes. Mechanistically, adriamycin complexes with histone H1 and induces phase transition of H1, forming fibrous aggregates in vitro. These results reveal a phase separation-driven mechanism for a chemotherapeutic drug.
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