TIP60 is required for tumorigenesis in non‐small cell lung cancer

Author:

Shibahara Daisuke1,Akanuma Naoki12,Kobayashi Ikei S.1,Heo Eunyoung13,Ando Mariko1,Fujii Masanori1,Jiang Feng4,Prin P. Nicholas1,Pan Gilbert1,Wong Kwok‐Kin5,Costa Daniel B.1,Bararia Deepak6,Tenen Daniel G.67,Watanabe Hideo4,Kobayashi Susumu S.168ORCID

Affiliation:

1. Department of Medicine, Beth Israel Deaconess Medical Center Harvard Medical School Boston Massachusetts USA

2. Department of Pathology University of California San Francisco San Francisco California USA

3. Department of Internal Medicine SMG‐SNU Boramae Medical Center Seoul South Korea

4. Division of Pulmonary, Critical Care and Sleep Medicine, Department of Medicine, Department of Genetics and Genomic Sciences Tisch Cancer Institute, Icahn School of Medicine at Mount Sinai New York New York USA

5. Perlmutter Cancer Center NYU Langone Medical Center New York New York USA

6. Harvard Stem Cell Institute, Harvard Medical School Boston Massachusetts USA

7. Cancer Science Institute of Singapore National University of Singapore Singapore Singapore

8. Division of Translational Genomics, Exploratory Oncology Research and Clinical Trial Center National Cancer Center Kashiwa Japan

Abstract

AbstractHistone modifications play crucial roles in transcriptional activation, and aberrant epigenetic changes are associated with oncogenesis. Lysine (K) acetyltransferases 5 (TIP60, also known as KAT5) is reportedly implicated in cancer development and maintenance, although its function in lung cancer remains controversial. Here we demonstrate that TIP60 knockdown in non‐small cell lung cancer cell lines decreased tumor cell growth, migration, and invasion. Furthermore, analysis of a mouse lung cancer model with lung‐specific conditional Tip60 knockout revealed suppressed tumor formation relative to controls, but no apparent effects on normal lung homeostasis. RNA‐seq and ChIP‐seq analyses of inducible TIP60 knockdown H1975 cells relative to controls revealed transglutaminase enzyme (TGM5) as downstream of TIP60. Investigation of a connectivity map database identified several candidate compounds that decrease TIP60 mRNA, one that suppressed tumor growth in cell culture and in vivo. In addition, TH1834, a TIP60 acetyltransferase inhibitor, showed comparable antitumor effects in cell culture and in vivo. Taken together, suppression of TIP60 activity shows tumor‐specific efficacy against lung cancer, with no overt effect on normal tissues. Our work suggests that targeting TIP60 could be a promising approach to treating lung cancer.

Funder

National Cancer Institute

Publisher

Wiley

Subject

Cancer Research,Oncology,General Medicine

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