In‐depth proteomics reveals the characteristic developmental profiles of early lung adenocarcinoma with epidermal growth factor receptor mutation

Author:

Dai Tomoko12ORCID,Adachi Jun3ORCID,Dai Yuichi4,Nakano Noriyuki5,Yamato Mariko6,Kikuchi Shinji78,Usui Shingo9,Minami Yuko9ORCID,Tomonaga Takeshi3,Noguchi Masayuki1011,Matsubara Daisuke1212,Sakamoto Noriaki1212

Affiliation:

1. Tsukuba Human Tissue Biobank Center University of Tsukuba Hospital Ibaraki Japan

2. Tsukuba Human Tissue Diagnostic Center University of Tsukuba Hospital Ibaraki Japan

3. Laboratory of Proteome for Drug Discovery Center for Drug Design Research National Institute of Biomedical Innovation, Health and Nutrition Osaka Ibaraki Japan

4. Department of Pathology Tsukuba Memorial Hospital Ibaraki Japan

5. Department of Pathology National Center for Child Health and Development Tokyo Japan

6. Department of Pathology University of Tsukuba Hospital Ibaraki Japan

7. Department of Thoracic Surgery, Faculty of Medicine University of Tsukuba Ibaraki Japan

8. Department of Thoracic Surgery Ibaraki Prefectural Central Hospital Ibaraki Japan

9. Department of Respiratory Surgery and Pathology National Hospital Organization Ibaraki Higashi National Hospital The Center of Chest Diseases and Severe Motor & Intellectual Disabilities Ibaraki Japan

10. Department of Pathology Narita Tomisato Tokushukai Hospital Chiba Japan

11. Center of Clinical and Translational Science Shonan Kamakura General Hospital Kamakura Japan

12. Department of Diagnostic Pathology, Faculty of Medicine University of Tsukuba Ibaraki Japan

Abstract

AbstractIntroductionLung adenocarcinoma progresses stepwise from atypical adenomatous hyperplasia to adenocarcinoma in situ (AIS), followed by minimally invasive adenocarcinoma (MIA), and then obvious invasive adenocarcinoma. In this study, we examined the protein expression profiles of early and epidermal growth factor receptor (EGFR) mutation‐positive lung adenocarcinomas.MethodsFifteen cases of small and EGFR mutation‐positive adenocarcinomas were collected, including AIS, MIA, and small invasive adenocarcinoma (SIA). We examined their protein expression profiles by tandem mass tag (TMT)‐labeling liquid chromatography‐mass spectrometry (LC–MS/MS) and compared the results between AIS and MIA versus SIA. The differentially expressed proteins were then verified by Western blot analysis and immunohistochemistry (IHC). The clinicopathological implications of the proteins were also examined by IHC.ResultsA total of 4220 proteins were identified by LC–MS/MS analysis. Pathway analysis of the differentially expressed proteins revealed that pathways related to interferon α/β signaling, glutamate and glutamine metabolism, and gluconeogenesis were upregulated in SIA relative to AIS. Among the 13 differentially expressed proteins, cellular retinoic acid binding protein 2 (CRABP2), delta(24)‐sterol reductase (DHCR24), and adenylate kinase 4 (AK4) were expressed significantly more strongly in SIA than in AIS. Patients with high expression of CRABP2, DHCR24, and AK4 showed a significantly poorer outcome than those with low expression.ConclusionIn comparison with AIS, SIA shows differences in several different protein expression pathways. Furthermore, CRABP2, DHCR24, and AK4 are useful IHC markers for diagnosis of lung adenocarcinoma invasiveness and may be associated with malignant progression of AIS.

Funder

Japan Society for the Promotion of Science

Publisher

Wiley

Subject

Cancer Research,Radiology, Nuclear Medicine and imaging,Oncology

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