Lung proteomics combined with metabolomics reveals molecular characteristics of inflammation‐related lung tumorigenesis induced by B(a)P and LPS

Author:

Ma Pengwei1,Miao Xinyi1,Li Mengyuan2,Kong Xiangbing1,Jiang Yuting1,Wang Pengpeng2,Zhang Peng3,Shang Pingping4,Chen Yusong5,Zhou Xiaolei6,Wang Wei2ORCID,Zhang Qiao1ORCID,Liu Hong7,Feng Feifei1ORCID

Affiliation:

1. Department of Toxicology Zhengzhou University School of Public Health Zhengzhou Henan China

2. Department of Occupational and Environmental Health, College of Public Health Zhengzhou University Zhengzhou Henan China

3. Department of Bone and Soft Tissue Cancer The Affiliated Cancer Hospital of Zhengzhou University (Henan Cancer Hospital) Zhengzhou China

4. Key Laboratory of Tobacco Chemistry Zhengzhou Tobacco Research Institute, CNC Zhengzhou Henan China

5. Quality Supervision & Test Center China National Tobacco Corporation Shandong Branch Jinan China

6. Department of Pulmonary Medicine, Henan Provincial Chest Hospital Zhengzhou University Zhengzhou Henan China

7. Department of Pulmonary Medicine The First Affiliated Hospital of Zhengzhou University Zhengzhou Henan China

Abstract

AbstractInflammatory microenvironment may take a promoting role in lung tumorigenesis. However, the molecular characteristics underlying inflammation‐related lung cancer remains unknown. In this work, the inflammation‐related lung tumorigenesis mouse model was established by treated with B(a)P (1 mg/mouse, once a week for 4 weeks), followed by LPS (2.5 μg/mouse, once every 3 weeks for five times), the mice were sacrificed 30 weeks after exposure. TMT‐labeled quantitative proteomics and untargeted metabolomics were used to interrogate differentially expressed proteins and metabolites in different mouse cancer tissues, followed by integrated crosstalk between proteomics and metabolomics through Spearman's correlation analysis. The result showed that compared with the control group, 103 proteins and 37 metabolites in B(a)P/LPS group were identified as significantly altered. By searching KEGG pathway database, proteomics pathways such as Leishmaniasis, Asthma and Intestinal immune network for IgA production, metabolomics pathways such as Vascular smooth muscle contraction, Linoleic acid metabolism and cGMP‐PKG signaling pathway were enriched. A total of 22 pathways were enriched after conjoint analysis of the proteomic and metabolomics, and purine metabolism pathway, the unique metabolism‐related pathway, which included significantly altered protein (adenylate cyclase 4, ADCY4) and metabolites (L‐Glutamine, guanosine monophosphate (GMP), adenosine and guanosine) was found. Results suggested purine metabolism may contribute to the inflammation‐related lung tumorigenesis, which may provide novel clues for the therapeutic strategies of inflammation‐related lung cancer.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Henan Province

China National Tobacco Corporation

State Tobacco Monopoly Administration

Publisher

Wiley

Subject

Health, Toxicology and Mutagenesis,Management, Monitoring, Policy and Law,Toxicology,General Medicine

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