Department of Oncology and Pathology, Bioclinicum, Karolinska University Hospital, U2, Akademiska Stråket 1, Karolinska Institutet, Stockholm, Sweden.
Department of Breast Disease, Henan Breast Cancer Center, The affiliated Cancer Hospital of Zhengzhou University & Henan Cancer Hospital, Zhengzhou, China.
Nat Commun. 2022 Jan 11;13(1):204. doi: 10.1038/s41467-021-27868-3.
Abnormal WNT signaling increases MYC expression in colon cancer cells in part via oncogenic super-enhancer-(OSE)-mediated gating of the active MYC to the nuclear pore in a poorly understood process. We show here that the principal tenet of the WNT-regulated MYC gating, facilitating nuclear export of the MYC mRNA, is regulated by a CTCF binding site (CTCFBS) within the OSE to confer growth advantage in HCT-116 cells. To achieve this, the CTCFBS directs the WNT-dependent trafficking of the OSE to the nuclear pore from intra-nucleoplasmic positions in a stepwise manner. Once the OSE reaches a peripheral position, which is triggered by a CTCFBS-mediated CCAT1 eRNA activation, its final stretch (≤0.7 μm) to the nuclear pore requires the recruitment of AHCTF1, a key nucleoporin, to the CTCFBS. Thus, a WNT/ß-catenin-AHCTF1-CTCF-eRNA circuit enables the OSE to promote pathological cell growth by coordinating the trafficking of the active MYC gene within the 3D nuclear architecture.
异常的 WNT 信号会增加结肠癌细胞中 MYC 的表达,部分原因是致癌性超级增强子 (OSE) 通过一种在很大程度上尚不清楚的过程介导活性 MYC 向核孔的门控作用。我们在这里表明,WNT 调节的 MYC 门控的主要原则,促进 MYC mRNA 的核输出,受 OSE 内 CTCF 结合位点 (CTCFBS) 的调节,以赋予 HCT-116 细胞生长优势。为此,CTCFBS 以逐步的方式指导 OSE 依赖 WNT 的易位从核质内位置到核孔。一旦 OSE 到达外围位置,这是由 CTCFBS 介导的 CCAT1 eRNA 激活触发的,其到达核孔的最后一段(≤0.7μm)需要将关键核孔蛋白 AHCTF1 募集到 CTCFBS。因此,WNT/β-catenin-AHCTF1-CTCF-eRNA 电路使 OSE 能够通过协调活性 MYC 基因在 3D 核架构内的易位来促进病理性细胞生长。