Fibroblast-enriched endoplasmic reticulum protein TXNDC5 promotes pulmonary fibrosis by augmenting TGFβ signaling through TGFBR1 stabilization

Author:

Lee Tzu-HanORCID,Yeh Chih-FanORCID,Lee Ying-Tung,Shih Ying-Chun,Chen Yen-Ting,Hung Chen-Ting,You Ming-Yi,Wu Pei-Chen,Shentu Tzu-Pin,Huang Ru-TingORCID,Lin Yu-Shan,Wu Yueh-Feng,Lin Sung-JanORCID,Lu Frank-LeighORCID,Tsao Po-NienORCID,Lin Tzu-Hung,Lo Shen-Chuan,Tseng Yi-Shuan,Wu Wan-Lin,Chen Chiung-Nien,Wu Chau-Chung,Lin Shuei-Liong,Sperling Anne I.,Guzy Robert D.,Fang YunORCID,Yang Kai-ChienORCID

Abstract

AbstractPulmonary fibrosis (PF) is a major public health problem with limited therapeutic options. There is a clear need to identify novel mediators of PF to develop effective therapeutics. Here we show that an ER protein disulfide isomerase, thioredoxin domain containing 5 (TXNDC5), is highly upregulated in the lung tissues from both patients with idiopathic pulmonary fibrosis and a mouse model of bleomycin (BLM)-induced PF. Global deletion of Txndc5 markedly reduces the extent of PF and preserves lung function in mice following BLM treatment. Mechanistic investigations demonstrate that TXNDC5 promotes fibrogenesis by enhancing TGFβ1 signaling through direct binding with and stabilization of TGFBR1 in lung fibroblasts. Moreover, TGFβ1 stimulation is shown to upregulate TXNDC5 via ER stress/ATF6-dependent transcriptional control in lung fibroblasts. Inducing fibroblast-specific deletion of Txndc5 mitigates the progression of BLM-induced PF and lung function deterioration. Targeting TXNDC5, therefore, could be a novel therapeutic approach against PF.

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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