Ultraviolet B-induced Otx2 expression in lens epithelial cells promotes epithelial–mesenchymal transition

Author:

Yoshitomi Yasuo1ORCID,Osada Hiromi2,Satake Haruka1,Kojima Masami3,Saito-Takatsuji Hidehito1,Ikeda Takayuki1,Yoshitake Yoshino1,Ishigaki Yasuhito4,Kubo Eri2,Sasaki Hiroshi2,Yonekura Hideto1ORCID

Affiliation:

1. Department of Biochemistry, Kanazawa Medical University School of Medicine, 1-1 Daigaku, Uchinada, Kahoku-gun, Ishikawa 920-0293, Japan

2. Department of Ophthalmology, Kanazawa Medical University School of Medicine, 1-1 Daigaku, Uchinada, Kahoku-gun, Ishikawa 920-0293, Japan

3. Department of Ophthalmology, Faculty of Medical Science, Kanazawa Medical University School of Nursing, 1-1 Daigaku, Uchinada, Kahoku-gun, Ishikawa 920-0293, Japan

4. Medical Research Institute, Kanazawa Medical University, 1-1 Daigaku, Uchinada, Kahoku-gun, Ishikawa 920-0293, Japan

Abstract

Ultraviolet (UV) radiation of eyes is a major risk factor for cataractogenesis, although the molecular mechanisms underlying in this process remain poorly understood and genes that are affected by UV radiation have not been fully identified. In this study, we examined the UV-related gene regulation in lens epithelial cells (LECs) of mouse eyes and investigated the molecular mechanisms of UV-triggered cataractogenesis. Forty-one genes were significantly upregulated in LECs following UVB exposure in vivo in two independent experiments. Among these, Otx2 was strongly upregulated in LECs, suggesting that it may act as an upstream regulator of UVB-induced changes in gene expression. Accordingly, Otx2 overexpression in LECs in vitro induced morphological changes in cell shapes. Epithelial–mesenchymal transition (EMT)-related molecules, such as TGFβ2, αSMA, and fibronectin were upregulated in Otx2-overexpressing LECs, concomitant with suppression of lens fiber cell marker genes, such as CRYAA and DNASEIIB. In vitro experiments suggested that UVB upregulated Otx2 through hydrogen peroxide generation. Aberrant upregulation of Otx2 in LECs following UV irradiation induces the EMT and alteration of the lens cell characters, likely contributing to cataractogenesis.

Funder

Kanazawa Medical University

National Institute for Basic Biology

Publisher

The Company of Biologists

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology

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