胰腺导管腺癌
旁侵犯
配体(生物化学)
癌症研究
整合素
病理
腺癌
化学
医学
胰腺癌
内科学
癌症
受体
作者
Shan Zhang,Luju Jiang,Shengchun Cai,Zhengyan Weng,Yanna Zhu,Zhiwei Cai,Hui Li,Qing Li,Lipeng Hu,Hong‐Fei Yao,Rong Hua,Yu Zhao,Dongxue Li,Xiaomei Yang,Junfeng Zhang,Shu‐Heng Jiang
标识
DOI:10.1002/advs.202511726
摘要
Perineural invasion (PNI) is a common pathological characteristic of pancreatic ductal adenocarcinoma (PDAC), closely linked to postoperative recurrence, metastasis, and unfavorable prognosis. Nevertheless, the precise mechanisms that govern PNI in PDAC remain poorly elucidated. Here, group-specific component protein (GC) is identified as one of the most significantly upregulated genes related to PNI, primarily derived from malignant ductal cells compared to other cell types. GC knockdown attenuates PDAC cell invasiveness toward nerves, and this effect operates independently of vitamin D transport. Moreover, GC protein activates Schwann cells by inducing a dedifferentiation program, and enhances the mutual chemoattraction between PDAC cells and Schwann cells. Mechanistically, integrin β1 (ITGB1) serves as the functional receptor for GC protein in both PDAC and Schwann cells. Targeting the ITGB1-FAK signaling cascade proves effective in reducing PNI and Schwann cell activation. In KPC (Pdx-Cre; LSL-KrasG12D+; LSL-Trp53R172H/+) mice and orthotopic xenografts model, GC silencing and ITGB1 blockade both efficiently reduce cancer-nerve interactions and mitigate PDAC progression. Clinically, GC protein, ITGB1, and phosphorylated-FAK are positively associated with the severity of PNI in PDAC cases. Collectively, these data demonstrate that GC protein engages integrin receptor signaling to display distinct functions in cancer cells and Schwann cells, thus enabling PNI.
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