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PAX3-FOXO1 通过其激活结构域募集 CBP/P300,并重塑 RNA Pol2 簇的分布。

PAX3-FOXO1 uses its activation domain to recruit CBP/P300 and shape RNA Pol2 cluster distribution.

机构信息

Department of Nutrition, Case Western Reserve University, Cleveland, OH, USA.

University Children's Hospital, Children's Research Center and Department of Oncology, Steinwiesstrasse 75, CH-8032, Zürich, Switzerland.

出版信息

Nat Commun. 2023 Dec 15;14(1):8361. doi: 10.1038/s41467-023-43780-4.

Abstract

Activation of oncogenic gene expression from long-range enhancers is initiated by the assembly of DNA-binding transcription factors (TF), leading to recruitment of co-activators such as CBP/p300 to modify the local genomic context and facilitate RNA-Polymerase 2 (Pol2) binding. Yet, most TF-to-coactivator recruitment relationships remain unmapped. Here, studying the oncogenic fusion TF PAX3-FOXO1 (P3F) from alveolar rhabdomyosarcoma (aRMS), we show that a single cysteine in the activation domain (AD) of P3F is important for a small alpha helical coil that recruits CBP/p300 to chromatin. P3F driven transcription requires both this single cysteine and CBP/p300. Mutants of the cysteine reduce aRMS cell proliferation and induce cellular differentiation. Furthermore, we discover a profound dependence on CBP/p300 for clustering of Pol2 loops that connect P3F to its target genes. In the absence of CBP/p300, Pol2 long range enhancer loops collapse, Pol2 accumulates in CpG islands and fails to exit the gene body. These results reveal a potential novel axis for therapeutic interference with P3F in aRMS and clarify the molecular relationship of P3F and CBP/p300 in sustaining active Pol2 clusters essential for oncogenic transcription.

摘要

癌基因表达的长距离增强子激活是由 DNA 结合转录因子 (TF) 的组装所启动的,导致辅激活因子如 CBP/p300 的募集,以改变局部基因组环境并促进 RNA 聚合酶 2 (Pol2) 的结合。然而,大多数 TF 到辅激活因子的募集关系仍然没有被映射。在这里,我们研究了来自肺泡横纹肌肉瘤 (aRMS) 的致癌融合 TF PAX3-FOXO1 (P3F),我们表明 P3F 的激活域 (AD) 中的一个单一半胱氨酸对于招募 CBP/p300 到染色质的小α螺旋卷曲很重要。P3F 驱动的转录既需要这个单一的半胱氨酸,也需要 CBP/p300。该半胱氨酸的突变降低了 aRMS 细胞的增殖并诱导了细胞分化。此外,我们发现 CBP/p300 对连接 P3F 与其靶基因的 Pol2 环的聚类有很深的依赖性。在缺乏 CBP/p300 的情况下,Pol2 长距离增强子环崩溃,Pol2 积累在 CpG 岛上并无法退出基因体。这些结果揭示了一种潜在的新的治疗轴,可用于在 aRMS 中干扰 P3F,并阐明了 P3F 和 CBP/p300 在维持维持致癌转录所必需的活跃 Pol2 簇方面的分子关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/38da/10724205/2fa74805d848/41467_2023_43780_Fig1_HTML.jpg

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