Functional inversion of circadian regulator REV-ERBα leads to tumorigenic gene reprogramming.

IF 9.1 1区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES Proceedings of the National Academy of Sciences of the United States of America Pub Date : 2024-10-15 Epub Date: 2024-10-09 DOI:10.1073/pnas.2411321121
Yatian Yang, Xiong Zhang, Demin Cai, Xingling Zheng, Xuan Zhao, June X Zou, Jin Zhang, Alexander D Borowsky, Marc A Dall'Era, Eva Corey, Nicholas Mitsiades, Hsing-Jien Kung, Xinbin Chen, Jian Jian Li, Michael Downes, Ronald M Evans, Hong-Wu Chen
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Abstract

Profound functional switch of key regulatory factors may play a major role in homeostasis and disease. Dysregulation of circadian rhythm (CR) is strongly implicated in cancer with mechanisms poorly understood. We report here that the function of REV-ERBα, a major CR regulator of the orphan nuclear receptor subfamily, is dramatically altered in tumors in both its genome binding and functional mode. Loss of CR is linked to a functional inversion of REV-ERBα from a repressor in control of CR and metabolic gene programs in normal tissues to a strong activator in different cancers. Through changing its association from NCoR/HDAC3 corepressor complex to BRD4/p300 coactivators, REV-ERBα directly activates thousands of genes including tumorigenic programs such as MAPK and PI3K-Akt signaling. Functioning as a master transcriptional activator, REV-ERBα partners with pioneer factor FOXA1 and directly stimulates a large number of signaling genes, including multiple growth factors, receptor tyrosine kinases, RASs, AKTs, and MAPKs. Moreover, elevated REV-ERBα reprograms FOXA1 to bind new targets through a BRD4-mediated increase in local chromatin accessibility. Pharmacological targeting with SR8278 diminishes the function of both REV-ERBα and FOXA1 and synergizes with BRD4 inhibitor in effective suppression of tumorigenic programs and tumor growth. Thus, our study revealed a functional inversion by a CR regulator in driving gene reprogramming as an unexpected paradigm of tumorigenesis mechanism and demonstrated a high effectiveness of therapeutic targeting such switch.

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昼夜节律调节器REV-ERBα的功能倒置导致肿瘤基因重编程。
关键调节因子的深刻功能转换可能在体内平衡和疾病中发挥重要作用。昼夜节律(CR)失调与癌症密切相关,其机制尚不清楚。我们在此报告,REV-ERBα是孤儿核受体亚家族的一个主要昼夜节律调节因子,在肿瘤中其基因组结合和功能模式都发生了显著改变。CR的缺失与REV-ERBα的功能倒置有关,在正常组织中,REV-ERBα是控制CR和代谢基因程序的抑制因子,而在不同癌症中,REV-ERBα则是一个强激活因子。通过从 NCoR/HDAC3 核心压抑复合体转变为 BRD4/p300 辅激活因子,REV-ERBα 直接激活了数千个基因,包括 MAPK 和 PI3K-Akt 信号转导等致瘤程序。作为主转录激活因子,REV-ERBα与先锋因子FOXA1合作,直接刺激大量信号基因,包括多种生长因子、受体酪氨酸激酶、RASs、AKTs和MAPKs。此外,REV-ERBα 的升高会通过 BRD4 介导的局部染色质可及性的增加,对 FOXA1 进行重新编程,使其与新的靶点结合。SR8278的药理靶向作用可降低REV-ERBα和FOXA1的功能,并与BRD4抑制剂协同作用,有效抑制致瘤程序和肿瘤生长。因此,我们的研究揭示了 CR 调控因子在驱动基因重编程过程中的功能倒置,这是一种意想不到的肿瘤发生机制范例,并证明了靶向治疗这种转换的高度有效性。
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来源期刊
CiteScore
19.00
自引率
0.90%
发文量
3575
审稿时长
2.5 months
期刊介绍: The Proceedings of the National Academy of Sciences (PNAS), a peer-reviewed journal of the National Academy of Sciences (NAS), serves as an authoritative source for high-impact, original research across the biological, physical, and social sciences. With a global scope, the journal welcomes submissions from researchers worldwide, making it an inclusive platform for advancing scientific knowledge.
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