KRT17 Promotes the Activation of HSCs via EMT in Liver Fibrosis

Although activation of hepatic stellate cells (HSCs) plays a central role in the development of liver fibrosis, the mechanism underlying the activation of HSCs remains unclear. Keratin 17 (KRT17), a member of the intermediate filament family, can regulate tumor cell proliferation and migration. The...

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Published inJournal of clinical and translational hepatology Vol. 10; no. 2; pp. 207 - 218
Main Authors Chen, Jing, Ge, Si-Jia, Feng, Hai-Juan, Wu, Shu-Zhen, Ji, Ran, Huang, Wei-Rong, Huang, Wei, Lu, Cui-Hua
Format Journal Article
LanguageEnglish
Published China XIA & HE Publishing Inc 28.04.2022
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Summary:Although activation of hepatic stellate cells (HSCs) plays a central role in the development of liver fibrosis, the mechanism underlying the activation of HSCs remains unclear. Keratin 17 (KRT17), a member of the intermediate filament family, can regulate tumor cell proliferation and migration. The current study aimed to elucidate the role of KRT17 in the activation of HSCs and the mechanisms underlying liver fibrosis. The expression of KRT17 was determined using immunohistochemistry in tissue microarray. Western blotting and qRT-PCR assays were used to determine the KRT17 expression in fibrotic liver tissues obtained from human subjects and mice. LX-2 cells were treated with TGF-β1 recombinant protein and adipocyte differentiation mixture (MDI) mix to induce and reverse LX-2 cell activation, respectively, in order to explore the correlation between KRT17 and HSC activation. Additionally, cell proliferation and migration abilities of LX-2 cells transfected with KRT17-overexpressing plasmid or small interfering RNA were determined using CCK-8, flow cytometry, Transwell, and wound healing assays. Finally, rescue assay was used to explore the role of KRT17 in HSC activation and epithelial-mesenchymal transition (EMT). The expression of KRT17 was higher in the human and mouse fibrotic liver tissues than in healthy liver tissues, and it was positively correlated with HSC activation. Upregulated KRT17 enhanced proliferation, migration, HSC activation and EMT in LX-2 cells, while knockdown of KRT17 reversed these effects. TGF-β1 recombinant protein accelerated KRT17-mediated EMT, HSC activation and proliferation, while TGF-β1 inhibitor counteracted the effect of KRT17 . KRT17 promoted HSC activation, proliferation and EMT in hepatic fibrosis probably via TGF-β1 signaling, and KRT17 might serve as a therapeutic target for the treatment of liver fibrosis.
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This study was supported by the National Natural Science Foundation of China, General Project (No. 82070624), Health Commission of Jiangsu Province, Key Project (No. ZDB2020006), Tianqing Liver Disease Research Foundation of China Hepatitis Prevention Foundation (No. TQGB20210029) and Social Development Foundation of Nantong City (No. JC2019032).
The authors have no conflict of interests related to this publication.
Study concept and design (CHL, WH), performance of experiments and manuscript drafting (JC, SJG, HJF), specimen collection and data illustration (SZW), and statistical analysis (RJ, WRH). All authors have checked and approved the final manuscript.
Contributed equally to this work.
ISSN:2225-0719
2310-8819
DOI:10.14218/JCTH.2021.00101