Caprin-1 influences autophagy-induced tumor growth and immune modulation in pancreatic cancer

Author:

Yang Wenbo,Chen Hongze,Li Guanqun,Zhang Tao,Sui Yuhang,Liu Liwei,Hu Jisheng,Wang Gang,Chen Hua,Wang Yongwei,Li Xina,Tan Hongtao,Kong Rui,Sun BeiORCID,Li LeORCID

Abstract

Abstract Background Pancreatic ductal adenocarcinoma (PDAC) is characterized by rapid progression and poor prognosis. Understanding the genetic mechanisms that affect cancer properties and reprogram tumor immune microenvironment will develop new strategies to maximize the benefits for cancer therapies. Methods Gene signatures and biological processes associated with advanced cancer and unfavorable outcome were profiled using bulk RNA sequencing and spatial transcriptome sequencing, Caprin-1 was identified as an oncogenesis to expedite pancreatic cancer growth by activating autophagy. The mechanism of Caprin-1 inducing autophagy activation was further explored in vitro and in vivo. In addition, higher level of Caprin-1 was found to manipulate immune responses and inflammatory-related pathways. The immune profiles associated with increased levels of Caprin-1 were identified in human PDAC samples. The roles of CD4+T cells, CD8+T cells and tumor associated macrophages (TAMs) on clinical outcomes prediction were investigated. Results Caprin-1 was significantly upregulated in advanced PDAC and correlated with poor prognosis. Caprin-1 interacted with both ULK1 and STK38, and manipulated ULK1 phosphorylation which activated autophagy and exerted pro-tumorigenic phenotypes. Additionally, the infiltrated CD4+T cells and tumor associated macrophages (TAMs) were increased in Caprin-1High tissues. The extensive CD4+T cells determined poor clinical outcome in Caprin-1high patients, arguing that highly expressed Caprin-1 may assist cancer cells to escape from immune surveillance. Conclusions Our findings establish causal links between the upregulated expression of Caprin-1 and autophagy activation, which may manipulate immune responses in PDAC development. Our study provides insights into considering Caprin-1 as potential therapeutic target for PDAC treatment.

Funder

National Natural Science Foundation of China

The Youth Innovation Talent Training Program of the General Undergraduate Colleges and Universities in Heilongjiang province

The Science Fund for Excellent Young Scholars of First Affiliated Hospital of Harbin Medical University

The Fund of Scientific Research Innovation of First Affiliated Hospital of Harbin Medical University

2021 Heilongjiang Natural Science Foundation Joint Project

National Outstanding Youth Science Fund Project of National Natural Science Foundation of China

Publisher

Springer Science and Business Media LLC

Subject

General Biochemistry, Genetics and Molecular Biology,General Medicine

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