Caspase 9b Drives Cellular Transformation, Lung Inflammation, and Lung Tumorigenesis

Author:

Kim Minjung1ORCID,Vu Ngoc T.1,Wang Xue1,Bulut Gamze B.2ORCID,Wang Min-Hsuan3,Uram-Tuculescu Cora4,Pillappa Raghavendra4ORCID,Kim Sungjune3,Chalfant Charles E.1567ORCID

Affiliation:

1. 1Department of Cell Biology, Microbiology, and Molecular Biology, University of South Florida, Tampa, Florida.

2. 2Department of Biochemistry and Molecular Biology, Virginia Commonwealth University, Richmond, Virginia.

3. 3Departments of Immunology and Radiology, The Moffitt Cancer Center, Tampa, Florida.

4. 4Department of Pathology, Virginia Commonwealth University (VCU), Richmond, Virginia.

5. 5Departments of Cell Biology and Medicine, Division of Hematology & Oncology, University of Virginia, Charlottesville, Virginia.

6. 6Program in Cancer Biology, University of Virginia Cancer Center, Charlottesville, Virginia.

7. 7Research Service, Richmond Veterans Administration Medical Center, Richmond, Virginia.

Abstract

Abstract Caspase 9 undergoes alternative splicing to produce two opposing isoforms: proapoptotic Caspase 9a and pro-survival Caspase 9b (C9b). Previously, our laboratory reported that C9b is expressed in majority of non–small cell lung cancer tumors and directly activates the NF-κB pathway. In this study, the role of C9b in activation of the NF-κB pathway in vivo, lung inflammation and immune responses, and lung tumorigenesis were examined. Specifically, a transgenic mouse model expressing human C9b in the lung pneumocytes developed inflammatory lung lesions, which correlated with enhanced activation of the NF-κB pathway and increased influx of immunosuppressive myeloid-derived suppressor cells in contrast to wild-type mice. C9b mice presented with facial dermatitis, a thickened and disorganized dermis, enhanced collagen depth, and increased serum levels of IL6. C9b mice also developed spontaneous lung tumors, and C9b cooperated with oncogenic KRAS in lung tumorigenesis. C9b expression also cooperated with oncogenic KRAS and p53 downregulation to drive the full cell transformation of human bronchial epithelial cells (e.g., tumor formation). Implications: Our findings show that C9b can directly activate NF-κB pathway in vivo to modulate lung inflammation, immune cell influx, and peripheral immune responses, which demonstrates that C9b is key factor in driving cell transformation and lung tumorigenesis.

Funder

National Institutes of Health

U.S. Department of Veterans Affairs

National Cancer Institute

Publisher

American Association for Cancer Research (AACR)

Subject

Cancer Research,Oncology,Molecular Biology

Reference46 articles.

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