8-Oxoguanine targeted by 8-oxoguanine DNA glycosylase 1 (OGG1) is central to fibrogenic gene activation upon lung injury

Author:

Pan Lang1ORCID,Hao Wenjing12,Xue Yaoyao1,Wang Ke1,Zheng Xu1,Luo Jixian13ORCID,Ba Xueqing14ORCID,Xiang Yang5,Qin Xiaoqun5,Bergwik Jesper6,Tanner Lloyd6,Egesten Arne6,Brasier Allan R7ORCID,Boldogh Istvan1

Affiliation:

1. Department of Microbiology and Immunology, University of Texas Medical Branch , Galveston , TX 77555, USA

2. Institute of Genetics and Developmental Biology, Chinese Academy of Sciences , Beijing 100871, China

3. School of Life Sciences, Shanxi University , Taiyuan , Shanxi 030006, China

4. Key Laboratory of Molecular Epigenetics of Ministry of Education, School of Life Science, Northeast Normal University , Changchun , Jilin 130024, China

5. Department of Physiology, School of Basic Medical Science, Central South University , Changsha , Hunan 410000, China

6. Respiratory Medicine, Allergology, & Palliative Medicine, Department of Clinical Sciences Lund, Lund University and Skåne University Hospital , SE-221 84 Lund , Sweden

7. Department of Medicine, University of Wisconsin-Madison School of Medicine and Public Health (SMPH) , Madison , WI 53705, USA

Abstract

AbstractReactive oxygen species (ROS) are implicated in epithelial cell-state transition and deposition of extracellular matrix upon airway injury. Of the many cellular targets of ROS, oxidative DNA modification is a major driving signal. However, the role of oxidative DNA damage in modulation profibrotic processes has not been fully delineated. Herein, we report that oxidative DNA base lesions, 8-oxoG, complexed with 8-oxoguanine DNA glycosylase 1 (OGG1) functions as a pioneer factor, contributing to transcriptional reprogramming within airway epithelial cells. We show that TGFβ1-induced ROS increased 8-oxoG levels in open chromatin, dynamically reconfigure the chromatin state. OGG1 complexed with 8-oxoG recruits transcription factors, including phosphorylated SMAD3, to pro-fibrotic gene promoters thereby facilitating gene activation. Moreover, 8-oxoG levels are elevated in lungs of mice subjected to TGFβ1-induced injury. Pharmacologic targeting of OGG1 with the selective small molecule inhibitor of 8-oxoG binding, TH5487, abrogates fibrotic gene expression and remodeling in this model. Collectively, our study implicates that 8-oxoG substrate-specific binding by OGG1 is a central modulator of transcriptional regulation in response to tissue repair.

Funder

National Institute of Allergy and Infectious Diseases

National Natural Science Foundation of China

Swedish Research Council

Swedish Heart and Lung Foundation

Publisher

Oxford University Press (OUP)

Subject

Genetics

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