Neutrophils Recruited by NKX2‐1 Suppression via Activation of CXCLs/CXCR2 Axis Promote Lung Adenocarcinoma Progression

Author:

La'ah Anita S12,Tsai Ping‐Hsing23,Yarmishyn Aliaksandr A.2,Ching Lo‐Jei4,Chen Chih‐Ying2,Chien Yueh23,Chen Jerry Chieh‐Yu1,Tsai Ming‐Long2,Chen Yi‐Chen2,Ma Chun2,Hsu Po‐Kuei56,Luo Yung‐Hung457,Chen Yuh‐Min478,Chiou Guang‐Yuh9,Lu Kai‐Hsi10,Lin Wen‐Chang11,Chou Yu‐Ting12,Wang Mong‐Lien1213ORCID,Chiou Shih‐Hwa12314ORCID

Affiliation:

1. Taiwan International Graduate Program in Molecular Medicine National Yang Ming Chiao Tung University and Academia Sinica Taipei 115 Taiwan

2. Department of Medical Research Taipei Veterans General Hospital Taipei 112 Taiwan

3. Institute of Pharmacology School of Medicine National Yang Ming Chiao Tung University Taipei 112 Taiwan

4. Institute of Clinical Medicine National Yang Ming Chiao Tung University Taipei 112 Taiwan

5. School of Medicine National Yang Ming Chiao Tung University Taipei 112 Taiwan

6. Department of Surgery Taipei Veterans General Hospital Taipei 112 Taiwan

7. Department of Chest Medicine Taipei Veterans General Hospital Taipei 112 Taiwan

8. Taipei Cancer Center Taipei Medical University Taipei 110 Taiwan

9. Department of Biological Science and Technology National Yang Ming Chiao Tung University HsinChu 300093 Taiwan

10. Department of Medical Research and Education Cheng‐Hsin General Hospital Taipei 112 Taiwan

11. Institute of Biomedical Sciences Academia Sinica Taipei 115 Taiwan

12. Institute of Biotechnology National Tsing Hua University Hsinchu 300044 Taiwan

13. Institute of Food Safety and Health Risk Assessment School of Pharmaceutical Sciences National Yang Ming Chiao Tung University Taipei 112 Taiwan

14. Genomic Research Center Academia Sinica Taipei 115 Taiwan

Abstract

AbstractNK2 Homeobox 1 (NKX2‐1) is a well‐characterized pathological marker that delineates lung adenocarcinoma (LUAD) progression. The advancement of LUAD is influenced by the immune tumor microenvironment through paracrine signaling. However, the involvement of NKX2‐1 in modeling the tumor immune microenvironment is still unclear. Here, the downregulation of NKX2‐1 is observed in high‐grade LUAD. Meanwhile, single‐cell RNA sequencing and Visium in situ capturing profiling revealed the recruitment and infiltration of neutrophils in orthotopic syngeneic tumors exhibiting strong cell‐cell communication through the activation of CXCLs/CXCR2 signaling. The depletion of NKX2‐1 triggered the expression and secretion of CXCL1, CXCL2, CXCL3, and CXCL5 in LUAD cells. Chemokine secretion is analyzed by chemokine array and validated by qRT‐PCR. ATAC‐seq revealed the restrictive regulation of NKX2‐1 on the promoters of CXCL1, CXCL2, and CXCL5 genes. This phenomenon led to increased tumor growth, and conversely, tumor growth decreased when inhibited by the CXCR2 antagonist SB225002. This study unveils how NKX2‐1 modulates the infiltration of tumor‐promoting neutrophils by inhibiting CXCLs/CXCR2‐dependent mechanisms. Hence, targeting CXCR2 in NKX2‐1‐low tumors is a potential antitumor therapy that may improve LUAD patient outcomes.

Funder

Taipei Veterans General Hospital

National Chiao Tung University

Veterans Affairs Council, R.O.C.

Institute of Biomedical Sciences, Academia Sinica

National Science and Technology Council

Publisher

Wiley

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