PO.TB10.11 · 肿瘤生物学
铁代谢是癌症相关成纤维细胞活化的基础
Iron metabolism underlies the activation of cancer associated fibroblasts
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
胰腺导管腺癌(PDAC)是主要癌症中死亡率最高的癌症之一,5年生存率为13%。这种恶性疾病的特征是由癌症相关成纤维细胞(CAFs)主要驱动的致密纤维化间质。然而,对于CAFs活化的分子机制知之甚少。我们对体外肌成纤维细胞/炎性CAF(myCAFs/iCAFs)模型进行的ATAC-seq分析表明,一种独特的染色质可及性图谱是胰腺星状细胞活化为myCAFs和iCAFs的基础。在此,我们发现用A485对p300/CBP组蛋白乙酰转移酶复合物进行药理学抑制可抑制活化CAF的形态、CAF转录特征,以及共培养体系中肿瘤类器官的生长。有趣的是,RNA-seq分析显示,A485处理与myCAFs和iCAFs中血红素代谢的上调同时出现,提示CAF活化可能依赖于铁代谢。与静息态PSCs相比,iCAFs和myCAFs在铁螯合后也表现出显著降低的活力和CAF标志物表达,而补充铁可挽救这一表型。总之,这些发现提示在CAF活化背景下表观遗传学与铁代谢之间存在联系。因此,靶向PDAC中CAFs的铁代谢通路可能成为减少间质重塑并改善治疗干预的一种有前景的策略。
查看英文原文 English abstract
Pancreatic ductal adenocarcinoma (PDAC) has one of the highest mortality rates among major cancers with a 5-year survival rate of 13%. This malignant disease is characterized by a dense, fibrotic stroma primarily driven by cancer-associated fibroblasts (CAFs). However, little is known about the molecular mechanism underlying the activation of CAFs. Our analysis of ATAC-seq conducted on in vitro myofibroblasts/inflammatory CAF (myCAFs/iCAFs) models suggest that a distinct landscape of chromatin accessibility underlies the activation of pancreatic stellate cells into both myCAFs and iCAFs. Here, we show that pharmacologic inhibition of the p300/CBP histone acetyltransferase complex with A485 suppresses activated CAF morphology, CAF transcriptional signatures, as well as the growth of tumor organoids in co-culture systems. Interestingly, RNA-seq analysis revealed an upregulation of heme metabolism that coincides with A485 treatment for both myCAFs and iCAFs, suggesting the potential dependency of CAF activation on iron metabolism. Both iCAFs and myCAFs also showed significantly reduced viability and CAF marker expression upon iron chelation compared with quiescent PSCs, and iron supplementation rescued this phenotype. Together, these findings suggest a link between epigenetics and iron metabolism in the context of CAF activation. Targeting the iron metabolic pathway for CAFs in PDAC may therefore serve as a promising strategy to reduce stromal remodeling and improve therapeutic interventions.
利益披露 Disclosure
K. Huang, None..
M. Pham, None..
C. Hwang, None.