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Oncogenes and Tumor Suppressors

AHNAK Loss in Mice Promotes Type II Pneumocyte Hyperplasia and Lung Tumor Development

Jun Won Park, Il Yong Kim, Ji Won Choi, Hee Jung Lim, Jae Hoon Shin, Yo Na Kim, Seo Hyun Lee, Yeri Son, Mira Sohn, Jong Kyu Woo, Joseph H. Jeong, Cheolju Lee, Yun Soo Bae and Je Kyung Seong
Jun Won Park
1Laboratory of Developmental Biology and Genomics, BK21 Program Plus for Advanced Veterinary Science, and Research Institute for Veterinary Science, College of Veterinary Medicine, Seoul National University, Seoul, Korea.
2Korea Mouse Phenotyping Center (KMPC), Seoul, Korea.
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Il Yong Kim
1Laboratory of Developmental Biology and Genomics, BK21 Program Plus for Advanced Veterinary Science, and Research Institute for Veterinary Science, College of Veterinary Medicine, Seoul National University, Seoul, Korea.
2Korea Mouse Phenotyping Center (KMPC), Seoul, Korea.
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Ji Won Choi
1Laboratory of Developmental Biology and Genomics, BK21 Program Plus for Advanced Veterinary Science, and Research Institute for Veterinary Science, College of Veterinary Medicine, Seoul National University, Seoul, Korea.
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Hee Jung Lim
2Korea Mouse Phenotyping Center (KMPC), Seoul, Korea.
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Jae Hoon Shin
1Laboratory of Developmental Biology and Genomics, BK21 Program Plus for Advanced Veterinary Science, and Research Institute for Veterinary Science, College of Veterinary Medicine, Seoul National University, Seoul, Korea.
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Yo Na Kim
1Laboratory of Developmental Biology and Genomics, BK21 Program Plus for Advanced Veterinary Science, and Research Institute for Veterinary Science, College of Veterinary Medicine, Seoul National University, Seoul, Korea.
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Seo Hyun Lee
1Laboratory of Developmental Biology and Genomics, BK21 Program Plus for Advanced Veterinary Science, and Research Institute for Veterinary Science, College of Veterinary Medicine, Seoul National University, Seoul, Korea.
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Yeri Son
1Laboratory of Developmental Biology and Genomics, BK21 Program Plus for Advanced Veterinary Science, and Research Institute for Veterinary Science, College of Veterinary Medicine, Seoul National University, Seoul, Korea.
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Mira Sohn
3Department of Life Sciences, Ewha Womans University, Seoul, Korea.
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Jong Kyu Woo
1Laboratory of Developmental Biology and Genomics, BK21 Program Plus for Advanced Veterinary Science, and Research Institute for Veterinary Science, College of Veterinary Medicine, Seoul National University, Seoul, Korea.
2Korea Mouse Phenotyping Center (KMPC), Seoul, Korea.
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Joseph H. Jeong
2Korea Mouse Phenotyping Center (KMPC), Seoul, Korea.
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Cheolju Lee
4Center for Theragnosis, Korea Institute of Science and Technology, Seoul, Korea.
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Yun Soo Bae
3Department of Life Sciences, Ewha Womans University, Seoul, Korea.
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Je Kyung Seong
1Laboratory of Developmental Biology and Genomics, BK21 Program Plus for Advanced Veterinary Science, and Research Institute for Veterinary Science, College of Veterinary Medicine, Seoul National University, Seoul, Korea.
2Korea Mouse Phenotyping Center (KMPC), Seoul, Korea.
5Interdisciplinary Program for Bioinformatics, Program for Cancer Biology and BIO-MAX/N-Bio Institute, Seoul National University, Seoul, Korea.
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  • For correspondence: snumouse@snu.ac.kr
DOI: 10.1158/1541-7786.MCR-17-0726 Published August 2018
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Abstract

AHNAK is known to be a tumor suppressor in breast cancer due to its ability to activate the TGFβ signaling pathway. However, the role of AHNAK in lung tumor development and progression remains unknown. Here, the Ahnak gene was disrupted to determine its effect on lung tumorigenesis and the mechanism by which it triggers lung tumor development was investigated. First, AHNAK protein expression was determined to be decreased in human lung adenocarcinomas compared with matched nonneoplastic lung tissues. Then, Ahnak−/− mice were used to investigate the role of AHNAK in pulmonary tumorigenesis. Ahnak−/− mice showed increased lung volume and thicker alveolar walls with type II pneumocyte hyperplasia. Most importantly, approximately 20% of aged Ahnak−/− mice developed lung tumors, and Ahnak−/− mice were more susceptible to urethane-induced pulmonary carcinogenesis than wild-type mice. Mechanistically, Ahnak deficiency promotes the cell growth of lung epithelial cells by suppressing the TGFβ signaling pathway. In addition, increased numbers of M2-like alveolar macrophages (AM) were observed in Ahnak−/− lungs, and the depletion of AMs in Ahnak−/− lungs alleviated lung hyperplastic lesions, suggesting that M2-like AMs promoted the progression of lung hyperplastic lesions in Ahnak-null mice. Collectively, AHNAK suppresses type II pneumocyte proliferation and inhibits tumor-promoting M2 alternative activation of macrophages in mouse lung tissue. These results suggest that AHNAK functions as a novel tumor suppressor in lung cancer.

Implications: The tumor suppressor function of AHNAK, in murine lungs, occurs by suppressing alveolar epithelial cell proliferation and modulating lung microenvironment. Mol Cancer Res; 16(8); 1287–98. ©2018 AACR.

Footnotes

  • Note: Supplementary data for this article are available at Molecular Cancer Research Online (http://mcr.aacrjournals.org/).

  • Received December 4, 2017.
  • Revision received January 24, 2018.
  • Accepted April 19, 2018.
  • Published first May 3, 2018.
  • ©2018 American Association for Cancer Research.
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Molecular Cancer Research: 16 (8)
August 2018
Volume 16, Issue 8
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AHNAK Loss in Mice Promotes Type II Pneumocyte Hyperplasia and Lung Tumor Development
Jun Won Park, Il Yong Kim, Ji Won Choi, Hee Jung Lim, Jae Hoon Shin, Yo Na Kim, Seo Hyun Lee, Yeri Son, Mira Sohn, Jong Kyu Woo, Joseph H. Jeong, Cheolju Lee, Yun Soo Bae and Je Kyung Seong
Mol Cancer Res August 1 2018 (16) (8) 1287-1298; DOI: 10.1158/1541-7786.MCR-17-0726

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AHNAK Loss in Mice Promotes Type II Pneumocyte Hyperplasia and Lung Tumor Development
Jun Won Park, Il Yong Kim, Ji Won Choi, Hee Jung Lim, Jae Hoon Shin, Yo Na Kim, Seo Hyun Lee, Yeri Son, Mira Sohn, Jong Kyu Woo, Joseph H. Jeong, Cheolju Lee, Yun Soo Bae and Je Kyung Seong
Mol Cancer Res August 1 2018 (16) (8) 1287-1298; DOI: 10.1158/1541-7786.MCR-17-0726
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