LncRNA MEG9 Promotes Inflammation and Liver Fibrosis Through S100A9 in Biliary Atresia

IF 2.5 2区 医学 Q1 PEDIATRICS Journal of pediatric surgery Pub Date : 2025-02-01 DOI:10.1016/j.jpedsurg.2024.07.018
Lingdu Meng , Junfeng Wang , Huifen Chen , Jiajie Zhu , Fanyang Kong , Gong Chen , Rui Dong , Shan Zheng
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Abstract

Background

The pathogenesis of biliary atresia (BA) remains elusive. We aimed to investigate the role of long noncoding RNA (lncRNA) MEG9 in BA.

Methods

LncRNA microarray was conducted to identify differentially expressed lncRNAs in three BA and three para-hepatoblastoma liver tissues. RT-qPCR validated the results. Human intrahepatic bile duct epithelial cells (HIBECs) were stably transfected with lncRNA MEG9 knockdown/overexpression to investigate its cellular localization and function. RNA sequencing (RNA-seq), differentially expressed genes (DEGs) analysis and gene set enrichment analysis were applied to MEG9-overexpresed HIBECs. RNA pull-down and mass spectrometry explored the interacting protein of MEG9, while clinical information was reviewed.

Results

436 differentially expressed lncRNAs were identified, with MEG9 highly upregulated in BA. RT-qPCR further confirmed MEG9's overexpression in BA and diagnostic potential (AUC = 0.9691). MEG9 was predominantly located in the nucleus and significantly promoted cell proliferation and migration. RNA-seq revealed inflammation- and extracellular matrix-related pathways enriched in MEG9-overexpressing HIBECs, with upregulated cytokine genes like CXCL6 and IL6. MMP-7 and collagen I were also overexpressed. Furthermore, 38 proteins were identified to specifically interact with MEG9, and S100A9 was highly expressed in cell models. S100A9 was also significantly upregulated in BA liver tissue and correlated with MEG9 expression (r = 0.313, p < 0.05), albumin level (r = −0.349, p < 0.05), and platelet level (r = −0.324, p < 0.05).

Conclusion

MEG9 influences cholangiocyte proliferation, migration, and cytokine production, potentially regulating BA inflammation and fibrosis via S100A9 interaction.
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LncRNA MEG9通过S100A9促进胆道闭锁患者的炎症和肝纤维化
背景胆道闭锁(BA)的发病机制尚不清楚。我们的目的是研究长链非编码RNA (lncRNA) MEG9在BA中的作用。方法采用slncrna芯片检测3种BA和3种肝旁母细胞瘤肝组织中lncrna的差异表达。RT-qPCR验证了结果。用lncRNA MEG9敲低/过表达稳定转染人肝内胆管上皮细胞(HIBECs),研究其细胞定位和功能。对meg9过表达的HIBECs进行RNA测序(RNA-seq)、差异表达基因(DEGs)分析和基因集富集分析。RNA pull-down和质谱分析探讨了MEG9的相互作用蛋白,同时回顾了临床资料。结果共鉴定出436个差异表达的lncrna,其中MEG9在BA中高度上调。RT-qPCR进一步证实MEG9在BA中的过表达及诊断潜力(AUC = 0.9691)。MEG9主要位于细胞核内,能显著促进细胞增殖和迁移。RNA-seq显示,meg9过表达的HIBECs中,炎症和细胞外基质相关通路丰富,细胞因子基因如CXCL6和IL6上调。MMP-7和胶原I也过表达。此外,38个蛋白被鉴定出与MEG9特异性相互作用,S100A9在细胞模型中高表达。S100A9在BA肝组织中也显著上调,并与MEG9表达相关(r = 0.313, p <;0.05),白蛋白水平(r = - 0.349, p <;0.05),血小板水平(r =−0.324,p <;0.05)。结论meg9影响胆管细胞增殖、迁移和细胞因子产生,可能通过S100A9相互作用调节胆管细胞炎症和纤维化。
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来源期刊
CiteScore
1.10
自引率
12.50%
发文量
569
审稿时长
38 days
期刊介绍: The journal presents original contributions as well as a complete international abstracts section and other special departments to provide the most current source of information and references in pediatric surgery. The journal is based on the need to improve the surgical care of infants and children, not only through advances in physiology, pathology and surgical techniques, but also by attention to the unique emotional and physical needs of the young patient.
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