成纤维细胞
细胞生物学
癌相关成纤维细胞
Wnt信号通路
生物
肿瘤微环境
受体
基因组编辑
细胞
舱室(船)
癌症研究
细胞培养
基因
清脆的
信号转导
计算生物学
成纤维细胞生长因子
细胞内
化学
抑癌基因
基因表达调控
转染
肿瘤细胞
3T3电池
作者
Nicholas F. Kuhn,Itzia Zaleta-Linares,Kenneth H. Hu,Tristan Courau,Brittany Davidson,Tammie Tam,Chih-Wei Chu,Maxime Kinet,Michael D. Rosenblum,Alexis J. Combes,William A. Nyberg,Justin Eyquem,Matthew F. Krummel
摘要
Fibroblasts play critical roles in regulating cellular relationships during tissue homeostasis, immunity, and tumor biology at multiple sites. However, tools to perturb fibroblasts at just one site in vivo are limited, restricting our understanding of how these cellular relationships act locally. We optimized local gene editing of fibroblasts in mouse tumor models to investigate how fibroblast perturbations affect the tumor microenvironment (TME). By knocking out receptors Osmr, Tgfbr2, or Il1r1 on cancer-associated fibroblasts (CAFs), we uncover that TGFBR2 signaling loss induces the emergence of a new Col18a1hi CAF cell state that is associated with worse survival in pancreatic cancer patients. Combinatorial gene KOs in CAFs reveals a circuit where these Col18a1hi CAFs reshape the TME by recruiting Siglec-Fhi neutrophils via Cxcl5 expression, and where this Col18a1hi CAF cell state is dependent on TNFR1 and canonical Wnt signaling. Together, a fast, affordable, and modular engineering method is demonstrated, allowing discovery of modified fibroblast identities and local intercellular relationships in the TME.
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