An antioxidant feedforward cycle coordinated by linker histone variant H1.2 and NRF2 that drives nonsmall cell lung cancer progression

Author:

Chen Yuchen1ORCID,Shi Jiajian1,Wang Xiaomu2,Zhou Lin3,Wang Qing4,Xie Yunhao4,Peng Chentai1,Kuang Linwu3,Yang Dong1,Yang Jing1,Yang Chen1,Li Xi1,Yuan Yangmian4,Zhou Yihao4,Peng Anlin5,Zhang Yu1ORCID,Chen Hong1,Liu Xinran1,Zheng Ling4,Huang Kun16,Li Yangkai3

Affiliation:

1. Tongji School of Pharmacy, Tongji Medical College and State Key Laboratory for Diagnosis and Treatment of Severe Zoonotic Infectious Diseases, Huazhong University of Science and Technology, Wuhan 430030, China

2. Department of Pharmacy, Xiangyang Central Hospital, Affiliated Hospital of Hubei University of Arts and Science, Xiangyang 441000, China

3. Department of Thoracic Surgery, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan 430030, China

4. College of Life Sciences, Wuhan University, Wuhan 430072, China

5. Department of Pharmacy, Wuhan Third Hospital and Tongren Hospital of Wuhan University, Wuhan 430060, China

6. Tongji-RongCheng Biomedical Center, Tongji Medical College, Huazhong University of Science and Technology, Wuhan 430030, China

Abstract

Nonsmall cell lung cancer (NSCLC) is highly malignant with limited treatment options, platinum-based chemotherapy is a standard treatment for NSCLC with resistance commonly seen. NSCLC cells exploit enhanced antioxidant defense system to counteract excessive reactive oxygen species (ROS), which contributes largely to tumor progression and resistance to chemotherapy, yet the mechanisms are not fully understood. Recent studies have suggested the involvement of histones in tumor progression and cellular antioxidant response; however, whether a major histone variant H1.2 (H1C) plays roles in the development of NSCLC remains unclear. Herein, we demonstrated that H1.2 was increasingly expressed in NSCLC tumors, and its expression was correlated with worse survival. When crossing the H1c knockout allele with a mouse NSCLC model ( Kras LSL-G12D/+ ), H1.2 deletion suppressed NSCLC progression and enhanced oxidative stress and significantly decreased the levels of key antioxidant glutathione (GSH) and GCLC, the catalytic subunit of rate-limiting enzyme for GSH synthesis. Moreover, high H1.2 was correlated with the IC50 of multiple chemotherapeutic drugs and with worse prognosis in NSCLC patients receiving chemotherapy; H1.2-deficient NSCLC cells presented reduced survival and increased ROS levels upon cisplatin treatment, while ROS scavenger eliminated the survival inhibition. Mechanistically, H1.2 interacted with NRF2, a master regulator of antioxidative response; H1.2 enhanced the nuclear level and stability of NRF2 and, thus, promoted NRF2 binding to GCLC promoter and the consequent transcription; while NRF2 also transcriptionally up-regulated H1.2. Collectively, these results uncovered a tumor-driving role of H1.2 in NSCLC and indicate an “H1.2-NRF2” antioxidant feedforward cycle that promotes tumor progression and chemoresistance.

Funder

MOST | National Natural Science Foundation of China

MOST | National Key Research and Development Program of China

China Postdoctoral Science Foundation

湖北省科技厅 | Natural Science Foundation of Hubei Province

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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