Tumor-Suppressing STF cDNA 3 Overexpression Suppresses Renal Fibrosis by Alleviating Anoikis Resistance and Inhibiting the PI3K/Akt Pathway

Background: Myofibroblast (MF) activation is the key event of irreversible renal interstitial fibrosis. Anoikis resistance is the hallmark of active MFs, which is conferred by continuous activation of the phosphatidylinositol-4,5-bisphosphate 3-kinase (PI3K)/protein kinase B (Akt) pathway. Our previ...

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Main Authors: Fei Xiao, Xinghong Liu, Yan Chen, Huanzi Dai
Format: Article
Language:English
Published: Karger Publishers 2021-07-01
Series:Kidney & Blood Pressure Research
Subjects:
Online Access:https://www.karger.com/Article/FullText/517318
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spelling doaj-8ede9e6d69aa4dc498993cee47a917e82021-08-19T12:02:00ZengKarger PublishersKidney & Blood Pressure Research1420-40961423-01432021-07-0111310.1159/000517318517318Tumor-Suppressing STF cDNA 3 Overexpression Suppresses Renal Fibrosis by Alleviating Anoikis Resistance and Inhibiting the PI3K/Akt PathwayFei XiaoXinghong LiuYan ChenHuanzi DaiBackground: Myofibroblast (MF) activation is the key event of irreversible renal interstitial fibrosis. Anoikis resistance is the hallmark of active MFs, which is conferred by continuous activation of the phosphatidylinositol-4,5-bisphosphate 3-kinase (PI3K)/protein kinase B (Akt) pathway. Our previous study found that tumor-suppressing STF cDNA 3 (TSSC3) enhances the sensitivity of cells to anoikis via the PI3K/Akt pathway. Therefore, we hypothesized that TSSC3 might suppress renal interstitial fibrosis by inducing anoikis via the PI3K/Akt pathway. Methods: Cell anoikis was induced by the exogenous addition of RGD-containing peptides or by culturing cells in suspension. MFs were established by stimulating HK-2 renal tubular epithelial cells with transforming growth factor beta 1 (TGF-β1). Lentivirus vectors were to construct a TSSC3 overexpression cell model. The effects of TSSC3 on the anoikis, growth, migration, invasion, and contraction of MFs were determined using annexin V-fluorescein isothiocyanate assays, cell counting kit-8 assays, wound healing migration assays, matrigel invasion assays, and collagen-based contraction assays. Results: The results demonstrated that TGF-β1, simultaneous with the induction of MF differentiation, confers significant protection against anoikis-induced cell death, which could be partly reversed by treatment with the PI3K/Akt pathway inhibitor, LY294002. Moreover, overexpression of TSSC3 obviously impaired cell growth, cell migration, cell invasion, contraction, and anoikis resistance of MFs, and decreased the activity of the PI3K/Akt pathway and the production of extracellular matrix molecules, all of which could be attenuated by treatment with the PI3K/Akt pathway activator, 740Y-P. Taken together, this study suggested that TSSC3 attenuates the anoikis resistance and profibrogenic ability of TGF-β1-induced MF by regulating the PI3K-Akt pathway. Conclusion: These findings provide a biological basis for further exploration of the therapeutic significance of targeting MF via TSSC3 in renal interstitial fibrosis.https://www.karger.com/Article/FullText/517318renal fibrosistumor-suppressing stf cdna 3transforming growth factor beta 1hk-2 cellsphosphatidylinositol-4,5-bisphosphate 3-kinase/protein kinase b signaling pathway
collection DOAJ
language English
format Article
sources DOAJ
author Fei Xiao
Xinghong Liu
Yan Chen
Huanzi Dai
spellingShingle Fei Xiao
Xinghong Liu
Yan Chen
Huanzi Dai
Tumor-Suppressing STF cDNA 3 Overexpression Suppresses Renal Fibrosis by Alleviating Anoikis Resistance and Inhibiting the PI3K/Akt Pathway
Kidney & Blood Pressure Research
renal fibrosis
tumor-suppressing stf cdna 3
transforming growth factor beta 1
hk-2 cells
phosphatidylinositol-4,5-bisphosphate 3-kinase/protein kinase b signaling pathway
author_facet Fei Xiao
Xinghong Liu
Yan Chen
Huanzi Dai
author_sort Fei Xiao
title Tumor-Suppressing STF cDNA 3 Overexpression Suppresses Renal Fibrosis by Alleviating Anoikis Resistance and Inhibiting the PI3K/Akt Pathway
title_short Tumor-Suppressing STF cDNA 3 Overexpression Suppresses Renal Fibrosis by Alleviating Anoikis Resistance and Inhibiting the PI3K/Akt Pathway
title_full Tumor-Suppressing STF cDNA 3 Overexpression Suppresses Renal Fibrosis by Alleviating Anoikis Resistance and Inhibiting the PI3K/Akt Pathway
title_fullStr Tumor-Suppressing STF cDNA 3 Overexpression Suppresses Renal Fibrosis by Alleviating Anoikis Resistance and Inhibiting the PI3K/Akt Pathway
title_full_unstemmed Tumor-Suppressing STF cDNA 3 Overexpression Suppresses Renal Fibrosis by Alleviating Anoikis Resistance and Inhibiting the PI3K/Akt Pathway
title_sort tumor-suppressing stf cdna 3 overexpression suppresses renal fibrosis by alleviating anoikis resistance and inhibiting the pi3k/akt pathway
publisher Karger Publishers
series Kidney & Blood Pressure Research
issn 1420-4096
1423-0143
publishDate 2021-07-01
description Background: Myofibroblast (MF) activation is the key event of irreversible renal interstitial fibrosis. Anoikis resistance is the hallmark of active MFs, which is conferred by continuous activation of the phosphatidylinositol-4,5-bisphosphate 3-kinase (PI3K)/protein kinase B (Akt) pathway. Our previous study found that tumor-suppressing STF cDNA 3 (TSSC3) enhances the sensitivity of cells to anoikis via the PI3K/Akt pathway. Therefore, we hypothesized that TSSC3 might suppress renal interstitial fibrosis by inducing anoikis via the PI3K/Akt pathway. Methods: Cell anoikis was induced by the exogenous addition of RGD-containing peptides or by culturing cells in suspension. MFs were established by stimulating HK-2 renal tubular epithelial cells with transforming growth factor beta 1 (TGF-β1). Lentivirus vectors were to construct a TSSC3 overexpression cell model. The effects of TSSC3 on the anoikis, growth, migration, invasion, and contraction of MFs were determined using annexin V-fluorescein isothiocyanate assays, cell counting kit-8 assays, wound healing migration assays, matrigel invasion assays, and collagen-based contraction assays. Results: The results demonstrated that TGF-β1, simultaneous with the induction of MF differentiation, confers significant protection against anoikis-induced cell death, which could be partly reversed by treatment with the PI3K/Akt pathway inhibitor, LY294002. Moreover, overexpression of TSSC3 obviously impaired cell growth, cell migration, cell invasion, contraction, and anoikis resistance of MFs, and decreased the activity of the PI3K/Akt pathway and the production of extracellular matrix molecules, all of which could be attenuated by treatment with the PI3K/Akt pathway activator, 740Y-P. Taken together, this study suggested that TSSC3 attenuates the anoikis resistance and profibrogenic ability of TGF-β1-induced MF by regulating the PI3K-Akt pathway. Conclusion: These findings provide a biological basis for further exploration of the therapeutic significance of targeting MF via TSSC3 in renal interstitial fibrosis.
topic renal fibrosis
tumor-suppressing stf cdna 3
transforming growth factor beta 1
hk-2 cells
phosphatidylinositol-4,5-bisphosphate 3-kinase/protein kinase b signaling pathway
url https://www.karger.com/Article/FullText/517318
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AT xinghongliu tumorsuppressingstfcdna3overexpressionsuppressesrenalfibrosisbyalleviatinganoikisresistanceandinhibitingthepi3kaktpathway
AT yanchen tumorsuppressingstfcdna3overexpressionsuppressesrenalfibrosisbyalleviatinganoikisresistanceandinhibitingthepi3kaktpathway
AT huanzidai tumorsuppressingstfcdna3overexpressionsuppressesrenalfibrosisbyalleviatinganoikisresistanceandinhibitingthepi3kaktpathway
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