Fibrinogen Alpha Chain Knockout Promotes Tumor Growth and Metastasis through Integrin–AKT Signaling Pathway in Lung Cancer

蛋白激酶B 癌症研究 转移 MMP2型 PI3K/AKT/mTOR通路 细胞迁移 上皮-间质转换 生物 整合素 A549电池 信号转导 化学 肺癌 癌症 细胞生物学 细胞 医学 病理 生物化学 遗传学
作者
Meng Wang,Guangxin Zhang,Yue Zhang,Xuelian Cui,Shuaibin Wang,Song Gao,Yicun Wang,Ying Liu,Jeeyoo Hope Bae,Wei‐Hsiung Yang,Lei S. Qi,Lizhong Wang,Runhua Liu
出处
期刊:Molecular Cancer Research [American Association for Cancer Research]
卷期号:18 (7): 943-954 被引量:92
标识
DOI:10.1158/1541-7786.mcr-19-1033
摘要

Abstract Fibrinogen is an extracellular matrix protein composed of three polypeptide chains with fibrinogen alpha (FGA), beta (FGB) and gamma (FGG). Although fibrinogen and its related fragments are involved in tumor angiogenesis and metastasis, their functional roles are incompatible. A recent genome-scale screening reveals that loss of FGA affects the acceleration of tumor growth and metastasis of lung cancer, but the mechanism remains elusive. We used CRISPR/Cas9 genome editing to knockout (KO) FGA in human lung adenocarcinoma (LUAD) cell lines A549 and H1299. By colony formation, transwell migration and matrix invasion assays, FGA KO increased cell proliferation, migration, and invasion but decreased the expressions of epithelial–mesenchymal transition marker E-cadherin and cytokeratin 5/8 in A549 and H1299 cells. However, administration of FGA inhibited cell proliferation and migration but induced apoptosis in A549 cells. Of note, FGA KO cells indirectly cocultured by transwells with FGA wild-type cells increased FGA in the culture medium, leading to decreased migration of FGA KO cells. Furthermore, our functional analysis identified a direct interaction of FGA with integrin α5 as well as FGA–integrin signaling that regulated the AKT–mTOR signaling pathway in A549 cells. In addition, we validated that FGA KO increased tumor growth and metastasis through activation of AKT signaling in an A549 xenograft model. Implications: These findings demonstrate that that loss of FGA facilities tumor growth and metastasis through the integrin–AKT signaling pathway in lung cancer.
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