转录因子网络在癌基因诱导的衰老过程中的动态变化

Themistoklis Vasilopoulos, R. Martínez-Zamudio
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引用次数: 0

摘要

异常的致癌信号传导会使细胞过渡到癌基因诱导的衰老(OIS)状态,以限制不受控制的增殖。尽管 OIS 是一种有效的肿瘤抑制机制,但它是一种不稳定的细胞状态,容易发生重编程,从而促进肿瘤发生。因此,阐明使细胞进入 OIS 的潜在基因调控机制对于确定调节衰老状态的可操作靶点至关重要。我们以前的研究表明,OIS程序的及时执行受分层转录因子(TF)网络的控制。然而,目前还不清楚癌基因超活化后,使细胞尽早进入 OIS 状态的基因调控机制。在这里,我们利用时间分辨多组学分析方法生成了致癌基因 HRASG12V 激活后 24 小时内的 TF 网络。利用这种方法,我们证明了向 OIS 过渡需要在预先建立的表观基因组图谱上重新排列 TF 网络,为细胞向 OIS 过渡所需的大量染色质重塑做好准备。我们的研究结果提供了细胞过渡到 OIS 之前染色质景观的详细图谱,从而为操纵具有潜在治疗价值的衰老结果提供了一个平台。
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Transcription factor network dynamics during the commitment to oncogene-induced senescence
Aberrant oncogenic signaling causes cells to transition into oncogene-induced senescence (OIS) to limit uncontrolled proliferation. Despite being a potent tumor suppressor mechanism, OIS is an unstable cell state susceptible to reprogramming that can promote tumorigenesis. Therefore, elucidating the underlying gene regulatory mechanisms that commit cells to OIS is critical to identifying actionable targets to modulate the senescence state. We previously showed that timely execution of the OIS program is governed by hierarchical transcription factor (TF) networks. However, the gene regulatory mechanisms that prime cells to commit to the OIS fate early upon oncogene hyperactivation are currently not known. Here, we leveraged our time-resolved multi-omic profiling approach to generate TF networks during the first 24 h of oncogenic HRASG12V activation. Using this approach, we demonstrate that the commitment to OIS requires the rearrangement of the TF network on a pre-established epigenomic landscape, priming the cells for the substantial chromatin remodeling that underpins the transition to OIS. Our results provide a detailed map of the chromatin landscape before cells transition to OIS thus offering a platform for manipulation of senescence outcomes of potentially therapeutic value.
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