TMEM232 promotes the inflammatory response in atopic dermatitis via the nuclear factor-κB and signal transducer and activator of transcription 3 signalling pathways

Author:

Han Jie12,Cai Xinying12,Qin Shichun12,Zhang Zengyunou12,Wu Yuanyuan12,Shi Yuanzhe12,Deng Tingyue12,Chen Benjin3,Liu Li4,Qian Haisheng3,Fang Wenliang5,Xiao Fengli1246ORCID

Affiliation:

1. Department of Dermatology of First Affiliated Hospital, and Institute of Dermatology

2. Key Laboratory of Dermatology (Ministry of Education)

3. School of Biomedical Engineering, Research and Engineering Center of Biomedical Materials, Anhui Provincial Institute of Translational Medicine

4. The Center for Scientific Research of Anhui Medical University , Hefei, Anhui , China

5. Anhui Medical University , Hefei, Anhui , China

6. Laboratory of Inflammatory and Immune Diseases , Hefei, Anhui , China

Abstract

Abstract Background Our group previously found that the transmembrane protein 232 (TMEM232) gene was associated with atopic dermatitis (AD) by genome-wide association study and fine mapping study. However, its function is unclear so far. Objectives To investigate the roles and mechanisms of TMEM232 in AD. Methods The expression of TMEM232 was investigated in skin lesions of patients with AD, the MC903-induced AD mouse model, human primary keratinocytes and immortalized human keratinocyte cell line (HaCaT) cells stimulated with different inflammatory factors. The role of TMEM232 in AD was analysed in HaCaT cells and Tmem232 knockout (Tmem232–/–) mice. Tmem232-specific small interfering RNA (siRNA) was used to evaluate its therapeutic potential in the AD mouse model. Results The expression of TMEM232 was significantly increased in skin lesions of patients with AD, the MC903-induced AD mouse model and human primary keratinocytes and HaCaT cells stimulated with different inflammatory factors compared with controls. In the presence of MC903, Tmem232–/– mice exhibited significantly reduced dermatitis severity, mast-cell infiltration in the back, and expression of T-helper (Th)1 and Th2-related inflammatory factors in skin tissue compared with wild-type mice. In vitro and in vivo experiments further showed that upregulation of TMEM232 in AD exacerbated the inflammation response through activating the pathway of nuclear factor-κB and signal transducer and activator of transcription (STAT) 3, and was regulated by the interleukin-4/STAT6 axis, which formed a self-amplifying loop. Finally, topical application of Tmem232 siRNA markedly ameliorated AD-like lesions in the AD model. Conclusions This study is the first to outline the function of TMEM232. It is involved in regulating inflammation in AD and may be a potential target for AD treatment.

Funder

National Natural Science Foundation of China

Key Project of Natural Science Research in Colleges

Universities in Anhui Province

Scientific Research Activities of Academic

Technological Leaders of Anhui Province

Natural Science Foundation of Anhui Province

Anhui Medical University

Publisher

Oxford University Press (OUP)

Subject

Dermatology

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