Induction of premature senescence and a less-fibrogenic phenotype by programmed cell death 4 knockdown in the human hepatic stellate cell line Lieming Xu-2

被引:0
作者
Rasheda Perveen
Iwata Ozaki
M. Manirujjaman
Keiichiro Mine
Yuzo Murata
Kenichi Tanaka
Jinghe Xia
Hirokazu Takahashi
Keizo Anzai
Sachiko Matsuhashi
机构
[1] Saga Medical School,Division of Hepatology, Diabetology and Endocrinology, Department of Internal Medicine
[2] Saga University,Health Administration Center
[3] Saga Medical School,Department of Pharmaceutical Sciences, School of Pharmacy at Fukuoka
[4] Saga University,Liver Disease Center
[5] International University of Health and Welfare,undefined
[6] Saga University Hospital,undefined
[7] Saga Medical School,undefined
[8] Saga University,undefined
来源
Human Cell | 2023年 / 36卷
关键词
PDCD4; p21; Hepatic stellate cell; α-SMA; Senescence; Fibrosis;
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摘要
Although programmed cell death 4 (PDCD4) was initially reported as a tumor suppressor and has been shown to inhibit cancer cell growth and metastasis, recent studies have demonstrated that loss of PDCD4 expression also induces growth inhibition by inducing apoptosis and/or cellular senescence. At present, the roles of PDCD4 in the activation and profibrogenic properties of myofibroblasts, which are critically involved in organ fibrosis, such as that in the liver, are unclear. We, therefore, investigated the roles of PDCD4 in myofibroblasts using human hepatic stellate cell line Lieming Xu-2 (LX-2). PDCD4 knockdown inhibited LX-2 proliferation and induced a senescent phenotype with increased β-galactosidase staining and p21 expression in a p53-independent manner together with downregulation of the notch signaling mediator RBJ-κ/CSL. During PDCD4 knockdown, alpha smooth muscle actin (α-SMA; an activation marker of myofibroblasts), matrix metalloproteinases MMP-1 and MMP-9, and collagen IV were upregulated, but the expression of collagen1α1 and collagen III was markedly downregulated without any marked change in the expression of tissue inhibitor of metalloproteinase-1 (TIMP-1). These results demonstrated that knockdown of PDCD4 induced the cellular senescence phenotype and activated myofibroblasts while suppressing the profibrogenic phenotype, suggesting roles of PDCD4 in cellular senescence and fibrogenesis in the liver.
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页码:583 / 601
页数:18
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[1]  
Iwaisako K(2012)What’s new in liver fibrosis? The origin of myofibroblasts in liver fibrosis J Gastroenterol Hepatol 27 65-68
[2]  
Brenner DA(2013)Hepatic stellate cells and liver fibrosis Comprarative Physiollogy 3 1473-1492
[3]  
Kisseleva T(1993)Tumor necrosis factor alpha (TNFα) and transforming growth factor β1 (TGFβ1) stimulate fibronectin synthesis and the transdifferentiation of fat-storing cells in the rat liver into myofibroblasts Virchows Archiv B 63 123-130
[4]  
Puche JE(2014)Origin of myofibroblasts in the fibrotic liver in mice Proc Natl Acad Sci USA 111 E3297-3305
[5]  
Saiman Y(1990)Expression of the gene of the alpha-smooth muscle-actin isoform in rat liver and in rat fat-storing (ITO) cells Virchows Arch 59 349-357
[6]  
Friedman SL(2017)Hepatic stellate cells as key target in liver fibrosis Adv Drug Deliv Rev 121 27-42
[7]  
Bachem MG(2015)Pathobiology of liver fibrosis: a translational success story Gut 64 830-841
[8]  
Sell K-M(2012)Myofibroblasts revert to an inactive phenotype during regression of liver fibrosis Proc Nat Acad Sci 109 9448-9453
[9]  
Melchior R(2008)Senescence of activated stellate cells limits liver fibrosis Cell 134 657-667
[10]  
Kropf J(2003)Replicative senescence of activated human hepatic stellate cells is accompanied by a pronounced inflammatory but less fibrogenic phenotype Hepatology 37 653-664