Drug-induced dedifferentiation towards drug-tolerant persister states is a common mechanism cancer cells exploit to escape therapies, hindering durable responses. How early epigenomic and transcriptomic programs coordinate to initiate these reversible transitions remains largely unexplored. Here we employ high-temporal-resolution multi-omics profiling, information-theoretic approaches, and dynamic system modeling to probe these processes in BRAF-mutant melanoma models and patient specimens. We uncover a hysteretic transition trajectory in response to oncogene inhibition and subsequent release, driven by two tightly coupled transcriptional waves that orchestrate genome-scale chromatin reconfiguration. Modeling of these waves suggests NF-κB/RelA-driven chromatin remodeling as the underlying mechanism of cell-state dedifferentiation, which we validate experimentally. We identify RelA-target genes epigenetically modulated to drive this process and define a quantitative epigenome gauge of melanoma cell-state plasticity that supports targeting epigenetic machineries to potentiate oncogene inhibition. Across additional cancer models, oxidative stress-mediated NF-κB/RelA activation emerges as a common driver of transitions into drug-tolerant persister states, revealing a central role for NF-κB axis in coupling oxidative stress to cancer progression.
Sequential transcriptional waves and NF-κB-driven chromatin remodeling direct drug-induced dedifferentiation in cancer.
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作者:Su Yapeng, Liu Chunmei, Lu Xiang, Chuang Hui-Yu, Li Guideng, Shao Shiqun, Kong Yan, Lee Jihoon W, Ng Rachel H, Wong Stephanie, Robert Lidia, Warden Charles, Liu Victoria, Chen Jie, Wang Zhuo, Qin Guangrong, Tang Yin, Cheng Hanjun, Ng Alphonsus H C, Chen Daniel, Peng Songming, Xue Min, Johnson Dazy, Xu Yu, Wang Jinhui, Wu Xiwei, Shmulevich Ilya, Shi Qihui, Levine Raphael, Ribas Antoni, Baltimore David, Guo Jun, Heath James R, Wei Wei
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2026 | 起止号: | 2026 Apr 15; 17(1):3228 |
| doi: | 10.1038/s41467-026-71349-4 | ||
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