The gut microbe-derived metabolite trimethylamine-N-oxide induces aortic valve fibrosis via PERK/ATF-4 and IRE-1α/XBP-1s signaling in vitro and in vivo

体内 代谢物 氧化三甲胺 体外 纤维化 化学 细胞生物学 主动脉瓣 药理学 内科学 医学 生物 生物化学 三甲胺 生物技术
作者
Zhenyu Xiong,Jiaying Li,Rihua Huang,Huimin Zhou,Xingfeng Xu,Shaozhao Zhang,Peihan Xie,Miaohong Li,Yue Leon Guo,Xinxue Liao,Xiaodong Zhuang
出处
期刊:Atherosclerosis [Elsevier]
卷期号:391: 117431-117431 被引量:13
标识
DOI:10.1016/j.atherosclerosis.2023.117431
摘要

Background and aims The gut microbe-derived metabolite trimethylamine-N-oxide (TMAO) has been implicated in the development of cardiovascular fibrosis. Endoplasmic Reticulum (ER) stress occurs after the dysfunction of ER and its structure. The three signals PERK/ATF-4, IRE-1α/XBP-1s and ATF6 activate upon ER stress. Recent reports have suggested that the activation of PERK/ATF-4 and IRE-1α/XBP-1s signaling contributes to cardiovascular fibrosis. However, whether TMAO mediates aortic valve fibrosis by activating PERK/ATF-4 and IRE-1α/XBP-1s signaling remains unclear. Methods Human aortic valve interstitial cells (AVICs) were isolated from aortic valve leaflets.PERK IRE-1α, ATF-4, XBP-1s and CHOP expression, and the production of collagen Ⅰ and TGF-β1 were analyzed following treatment with TMAO. The role of the PERK/ATF-4 and IRE-1α/XBP-1s signaling pathways in TMAO-induced fibrotic formation was determined using inhibitors and small interfering RNA. Results Diseased valves produced greater levels of ATF-4, XBP-1, collagen Ⅰ and TGF-β1. Interestingly, diseased cells exhibited augmented PERK/ATF-4 and IRE-1α/XBP-1s activation after TMAO stimulation. Inhibition and silencing of PERK/ATF-4 and IRE-1α/XBP-1s each resulted in enhanced suppression of TMAO-induced fibrogenic activity in diseased cells. Mice treated with dietary choline supplementation had substantially increased TMAO levels and aortic valve fibrosis, which were reduced by 3,3-dimethyl-1-butanol (DMB, an inhibitor of trimethylamine formation) treatment. Moreover, a high-choline and high-fat diet remodeled the gut microbiota in mice. Conclusions TMAO promoted aortic valve fibrosis through activation of the PERK/ATF-4 and IRE-1α/XBP-1s signaling pathways in vitro and in vivo. Modulation of diet, gut microbiota, TMAO, PERK/ATF-4 and IRE1-α/XBP-1s may be a promising approach to prevent aortic valve fibrosis.
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