GABRP regulates chemokine signalling, macrophage recruitment and tumour progression in pancreatic cancer through tuning KCNN4-mediated Ca2+ signalling in a GABA-independent manner

Author:

Jiang Shu-Heng,Zhu Li-Li,Zhang Man,Li Rong-Kun,Yang Qin,Yan Jiang-Yu,Zhang Ce,Yang Jian-Yu,Dong Fang-Yuan,Dai Miao,Hu Li-Peng,Li Jun,Li Qing,Wang Ya-Hui,Yang Xiao-Mei,Zhang Yan-Li,Nie Hui-Zhen,Zhu Lei,Zhang Xue-Li,Tian Guang-Ang,Zhang Xiao-Xin,Cao Xiao-Yan,Tao Ling-Ye,Huang Shan,Jiang Yong-Sheng,Hua Rong,Qian Luo Kathy,Gu Jian-Ren,Sun Yong-Wei,Hou Shangwei,Zhang Zhi-GangORCID

Abstract

Background and aimsPancreatic ductal adenocarcinoma (PDAC) is a leading cause of cancer-related death worldwide. Neurotransmitter-initiated signalling pathway is profoundly implicated in tumour initiation and progression. Here, we investigated whether dysregulated neurotransmitter receptors play a role during pancreatic tumourigenesis.MethodsThe Cancer Genome Atlas and Gene Expression Omnibus datasets were used to identify differentially expressed neurotransmitter receptors. The expression pattern of gamma-aminobutyric acid type A receptor pi subunit (GABRP) in human and mouse PDAC tissues and cells was studied by immunohistochemistry and western blot analysis. The in vivo implications of GABRP in PDAC were tested by subcutaneous xenograft model and lung metastasis model. Bioinformatics analysis, transwell experiment and orthotopic xenograft model were used to identify the in vitro and in vivo effects of GABRP on macrophages in PDAC. ELISA, co-immunoprecipitation, proximity ligation assay, electrophysiology, promoter luciferase activity and quantitative real-time PCR analyses were used to identify molecular mechanism.ResultsGABRP expression was remarkably increased in PDAC tissues and associated with poor prognosis, contributed to tumour growth and metastasis. GABRP was correlated with macrophage infiltration in PDAC and pharmacological deletion of macrophages largely abrogated the oncogenic functions of GABRP in PDAC. Mechanistically, GABRP interacted with KCNN4 to induce Ca2+ entry, which leads to activation of nuclear factor κB signalling and ultimately facilitates macrophage infiltration by inducing CXCL5 and CCL20 expression.ConclusionsOverexpressed GABRP exhibits an immunomodulatory role in PDAC in a neurotransmitter-independent manner. Targeting GABRP or its interaction partner KCNN4 may be an effective therapeutic strategy for PDAC.

Funder

National Natural Science Foundation of China

Publisher

BMJ

Subject

Gastroenterology

Reference57 articles.

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