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肿瘤相关成纤维细胞下调 I 型干扰素受体以刺激肿瘤内基质生成。

Cancer-associated fibroblasts downregulate type I interferon receptor to stimulate intratumoral stromagenesis.

机构信息

Department of Biomedical Sciences, School of Veterinary Medicine, University of Pennsylvania, Philadelphia, PA, 19104, USA.

Department of Pathology, Medical College of Wisconsin, Milwaukee, WI, 53226, USA.

出版信息

Oncogene. 2020 Sep;39(38):6129-6137. doi: 10.1038/s41388-020-01424-7. Epub 2020 Aug 17.

Abstract

Activation of cancer-associated fibroblasts (CAFs) and ensuing desmoplasia play an important role in the growth and progression of solid tumors. Here we demonstrate that, within colon and pancreatic ductal adenocarcinoma tumors, efficient stromagenesis relies on downregulation of the IFNAR1 chain of the type I interferon (IFN1) receptor. Expression of the fibroblast activation protein (FAP) and accumulation of the extracellular matrix (ECM) was notably impaired in tumors grown in the Ifnar1 (SA) knock-in mice, which are deficient in IFNAR1 downregulation. Primary fibroblasts from these mice exhibited elevated levels of Smad7, a negative regulator of the transforming growth factor-β (TGFβ) pathway. Knockdown of Smad7 alleviated deficient ECM production in SA fibroblasts in response to TGFβ. Analysis of human colorectal cancers revealed an inverse correlation between IFNAR1 and FAP levels. Whereas growth of tumors in SA mice was stimulated by co-injection of wild type but not SA fibroblasts, genetic ablation of IFNAR1 in fibroblasts also accelerated tumor growth. We discuss how inactivation of IFNAR1 in CAFs acts to stimulate stromagenesis and tumor growth.

摘要

癌症相关成纤维细胞(CAFs)的激活以及随之而来的细胞外基质(ECM)增生在实体瘤的生长和进展中起着重要作用。在这里,我们证明在结肠和胰腺导管腺癌肿瘤中,有效的基质生成依赖于Ⅰ型干扰素(IFN1)受体的 IFNAR1 链的下调。在 Ifnar1(SA)敲入小鼠中生长的肿瘤中,纤维母细胞激活蛋白(FAP)的表达和 ECM 的积累明显受损,这些小鼠缺乏 IFNAR1 的下调。这些小鼠的原代成纤维细胞表现出较高水平的 Smad7,Smad7 是转化生长因子-β(TGFβ)途径的负调节剂。Smad7 的敲低减轻了 SA 成纤维细胞对 TGFβ反应中 ECM 产生不足的情况。对人类结直肠癌的分析显示 IFNAR1 和 FAP 水平呈负相关。虽然在 SA 小鼠中,与野生型成纤维细胞共注射可刺激肿瘤生长,但成纤维细胞中 IFNAR1 的基因缺失也加速了肿瘤生长。我们讨论了 CAFs 中 IFNAR1 的失活如何刺激基质生成和肿瘤生长。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c9fb/7502515/dd6951053249/nihms-1618920-f0001.jpg

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