研究概要
这些发现强调了FOSL1在ATC染色质重塑和抑制NK细胞细胞毒性功能中的作用,从而为潜在癌症治疗方法的开发提供了见解。
中文摘要
未标注:间变性甲状腺癌(ATC)是侵袭性最强的甲状腺癌类型,生存时间仅为7至10个月。既往研究表明,ATC肿瘤微环境(TME)中NK细胞的比例和细胞毒性均降低。在本研究中,我们探讨了超级增强子(SE)——即驱动基因高表达的相邻增强子簇——在重塑ATC肿瘤微环境中的作用。对ATC中SE景观的全面分析揭示,致癌性SE的激活是甲状腺癌去分化和间变性转化的一种机制。基于ATC中复发性SE构建的SE特征与患者总生存期显著缩短相关。FOSL1被鉴定为一个SE驱动的转录因子,对ATC细胞的表观遗传重塑至关重要。有趣的是,FOSL1结合于其自身的SE,促进染色质环化以及远端SE与其启动子的空间邻近,并维持其高表达,形成正反馈自我调控回路。在ATC进展过程中,FOSL1通过结合金属蛋白酶ADAM9和MMP14的SE来增强其表达,从而促进MICA从细胞表面脱落,并导致随后对NK细胞杀伤的免疫逃逸。沉默FOSL1、ADAM9或MMP9可使ATC细胞在体外对NK细胞介导的细胞毒性敏感,并在体内抑制ATC生长。总之,这些发现凸显了FOSL1在ATC染色质重塑以及削弱NK细胞细胞毒性功能中的作用,从而为潜在癌症治疗方法的开发提供了见解。意义:解析甲状腺癌去分化和间变性转化背后的致癌超级增强子,揭示FOSL1是表观遗传重塑和免疫逃逸的驱动因子,突显了在间变性甲状腺癌中靶向FOSL1的潜力。
展开英文摘要原文
UNLABELLED: Anaplastic thyroid cancer (ATC) is the most aggressive type of thyroid cancer with survival time of only 7 to 10 months. Previous work revealed reduced proportions and cytotoxicity of NK cells in the ATC tumor microenvironment (TME). In this study, we investigated the role of super-enhancers (SE), clusters of adjacent enhancers that drive high expression of genes, in reshaping the TME in ATC. Comprehensive profiling of the SE landscapes in ATC revealed the activation of oncogenic SEs as a mechanism underlying the dedifferentiation and anaplastic transformation of thyroid cancer. An SE signature based on recurrent SEs in ATC was associated with significantly shortened overall patient survival. FOSL1 was identified as an SE-driven transcriptional factor that was crucial for epigenetic remodeling of ATC cells. Interestingly, FOSL1 bound to its own SE, promoted chromatin looping and spatial proximity of the distal SE with its promoter, and maintained its high expression, forming a positive feedback self-regulation circuit. During ATC progression, FOSL1 boosted the expression of metalloproteinases ADAM9 and MMP14 via binding to their SEs, which promoted MICA shedding from the cell surface and led to subsequent immune escape from NK-cell killing. Silencing FOSL1, ADAM9, or MMP9 sensitized ATC cells to NK cell-mediated cytotoxicity in vitro and suppressed ATC growth in vivo. Together, these findings highlight the role of FOSL1 in chromatin remodeling of ATC and in dampening cytotoxic functions of NK cells, thereby providing insights into the development of potential cancer therapeutics.
SIGNIFICANCE: Profiling oncogenic super-enhancers underlying dedifferentiation and anaplastic transformation of thyroid cancer reveals FOSL1 as a driver of epigenetic remodeling and immune escape, highlighting the potential of targeting FOSL1 in anaplastic thyroid cancer.
论文信息
- 作者
- Huo Y、Huang Y、Yu X、Han L、Zhang L、Huang L、Yang Y、Zhang N
- 单位
- Shandong Provincial Key Laboratory of Precision Oncology, Cancer Research Center, Shandong Cancer Hospital and Institute, Shandong First Medical University and Shandong Academy of Medical Sciences, Jinan, China.China
- 期刊
- Cancer research2026 May 4