Department of Health Science and Technology, Samsung Advanced Institute for Health Science and Technology, Sungkyunkwan University, Seoul, 06351, Republic of Korea.
Department of Bio and Brain Engineering, Korea Advanced Institute of Science and Technology, Daejeon, 34141, Republic of Korea.
Nat Commun. 2022 May 19;13(1):2793. doi: 10.1038/s41467-022-30484-4.
Although stromal fibroblasts play a critical role in cancer progression, their identities remain unclear as they exhibit high heterogeneity and plasticity. Here, a master transcription factor (mTF) constructing core-regulatory circuitry, PRRX1, which determines the fibroblast lineage with a myofibroblastic phenotype, is identified for the fibroblast subgroup. PRRX1 orchestrates the functional drift of fibroblasts into myofibroblastic phenotype via TGF-β signaling by remodeling a super-enhancer landscape. Such reprogrammed fibroblasts have myofibroblastic functions resulting in markedly enhanced tumorigenicity and aggressiveness of cancer. PRRX1 expression in cancer-associated fibroblast (CAF) has an unfavorable prognosis in multiple cancer types. Fibroblast-specific PRRX1 depletion induces long-term and sustained complete remission of chemotherapy-resistant cancer in genetically engineered mice models. This study reveals CAF subpopulations based on super-enhancer profiles including PRRX1. Therefore, mTFs, including PRRX1, provide another opportunity for establishing a hierarchical classification system of fibroblasts and cancer treatment by targeting fibroblasts.
虽然基质成纤维细胞在癌症进展中起着关键作用,但由于其表现出高度的异质性和可塑性,其身份仍不清楚。在这里,确定了一个主转录因子 (mTF),即 PRRX1,它构建了核心调控回路,决定了具有成肌纤维表型的成纤维细胞谱系。PRRX1 通过重塑超级增强子景观,通过 TGF-β 信号转导协调成纤维细胞向成肌纤维表型的功能漂移。这种重编程的成纤维细胞具有成肌纤维功能,导致癌症的致瘤性和侵袭性明显增强。在多种癌症类型中,癌症相关成纤维细胞 (CAF) 中的 PRRX1 表达具有不利的预后。成纤维细胞特异性 PRRX1 耗竭可诱导遗传工程小鼠模型中化疗耐药性癌症的长期和持续完全缓解。本研究根据包括 PRRX1 在内的超级增强子图谱揭示了 CAF 亚群。因此,mTF,包括 PRRX1,为通过靶向成纤维细胞建立成纤维细胞的层次分类系统和癌症治疗提供了另一个机会。