OC-STAMP Overexpression Drives Lung Alveolar Epithelial Cell Type II Senescence in Silicosis

Author:

Li Tian1ORCID,Yang Xin-yu1ORCID,Xu Ding-jie2,Gao Zi-yi3ORCID,Gao Yi-bing3ORCID,Jin Fu-yu3ORCID,Li Ya-qian3ORCID,Liu Shu-peng1ORCID,Li Shi-feng3ORCID,Gao Xue-min3ORCID,Cai Wen-chen3ORCID,Mao Na3ORCID,Wei Zhong-qiu1ORCID,Liu He-liang3ORCID,Sun Ying1ORCID,Yang Fang3ORCID,Xu Hong13ORCID

Affiliation:

1. Basic Medical College, Hebei Key Laboratory for Chronic Diseases, North China University of Science and Technology, Tangshan, Hebei Province 063210, China

2. Traditional Chinese Medicine College, North China University of Science and Technology, Tangshan, Hebei Province 063210, China

3. School of Public Health, Hebei Key Laboratory for Organ Fibrosis Research, North China University of Science and Technology, Tangshan, Hebei Province 063210, China

Abstract

Cellular senescence has been considered an important driver of many chronic lung diseases. However, the specific mechanism of cellular senescence in silicosis is still unknown. In the present study, silicotic rats and osteoclast stimulatory transmembrane protein (Ocstamp) overexpression of MLE-12 cells were used to explore the mechanism of OC-STAMP in cellular senescence in alveolar epithelial cell type II (AEC2). We found an increasing level of OC-STAMP in AEC2 of silicotic rats. Overexpression of Ocstamp in MLE-12 cells promoted epithelial-mesenchymal transition (EMT), endoplasmic reticulum (ER) stress, and cellular senescence. Myosin heavy chain 9 (MYH9) was a potential interacting protein of OC-STAMP. Knockdown of Ocstamp or Myh9 inhibited cellular senescence in MLE-12 cells transfected with pcmv6-Ocstamp. Treatment with 4-phenylbutyrate (4-PBA) to inhibit ER stress also attenuated cellular senescence in vitro or in vivo. In conclusion, OC-STAMP promotes cellular senescence in AEC2 in silicosis.

Funder

Science and Technology Project of Hebei Education Department

Publisher

Hindawi Limited

Subject

Cell Biology,Aging,General Medicine,Biochemistry

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