肝星状细胞
同源盒
肝纤维化
生物
基因敲除
细胞生物学
转录因子
刺猬信号通路
癌症研究
调节器
转染
FOXO3公司
纤维化
转录调控
形态发生剂
下调和上调
时间1
化学
信号转导
HEK 293细胞
转化生长因子β
转化生长因子
成纤维细胞生长因子
胶质1
生长因子
分子生物学
基因表达调控
抄写(语言学)
单倍率不足
药理学
体内
小发夹RNA
作者
Qinrong Luan,Zhecheng Wang,Yuxing Wang,Jiali Xu,GuoRong WANG,Zhehao Hu,Junjun Zhou,Xiaofeng Tian,Yan Zhao,Jihong Yao
摘要
BACKGROUND AND PURPOSE: Mesenchyme homeobox 1 (MEOX1) has been characterised as a central transcriptional regulator of fibroblast activation. Ligustilide (LIG) has significant antifibrotic, anti-inflammatory and antioxidative activities. We investigated if LIG can ameliorate hepatic fibrosis by targeting MEOX1 and exploring the underlying mechanism. EXPERIMENTAL APPROACH: )-induced mice were used to assess the antifibrotic effects of AAV9-pGFAP-sh-MEOX1 and LIG. In vitro, LX-2 cells, following transfection with siRNA or pcDNA or pretreatment with LIG, were incubated with TGF-β1 for the assessment. KEY RESULTS: Knockdown of MEOX1 mitigated fibrosis, both in vivo and in vitro. Furthermore, through a strategy involving Traditional Chinese Medicine (TCM) prescription screening, molecular docking, cellular thermal shift assay (CETSA), site-specific mutation and surface plasmon resonance (SPR), we identified LIG as a potential inhibitor of MEOX1. Subsequent validation confirmed that LIG exerted significant antifibrotic effects through MEOX1. Mechanistic studies revealed that MEOX1 promoted transcriptional enhanced associate domain factor 2 (TEAD2) transcription, by binding to the -988 to -982 nt region of the TEAD2 promoter, which increased the transcription of Hippo signalling targets and stimulated hepatic stellate cell (HSC) activation and proliferation. LIG can also bind to the HOX domain of MEOX1, thereby inhibiting its function and alleviating hepatic fibrosis. CONCLUSION AND IMPLICATIONS: The MEOX1-TEAD2 signalling axis is crucial for hepatic fibrosis. LIG attenuates hepatic fibrosis by targeting MEOX1 and inhibiting the downstream of the Hippo signalling pathway. Our results elucidated the mechanistic basis for developing LIG as a clinical antifibrotic agent.
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