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Steviol stabilizes polycystin 1 expression and promotes lysosomal degradation of CFTR and β-catenin proteins in renal epithelial cells

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dc.contributor.author Chaowalit Yuajit
dc.contributor.author Chatchai Muanprasat
dc.contributor.author Sureeporn Homvisasevongsa
dc.contributor.author Varanuj Chatsudthipong
dc.contributor.author เชาวลิต ยั่วจิตร
dc.contributor.author ฉัตรชัย เหมือนประสาท
dc.contributor.author สุรีย์พร หอมวิเศษวงศา
dc.contributor.author วรนุช ฉัตรสุทธิพงษ์
dc.contributor.other Ubon Ratchathani University. College of Medicine and Public Health en
dc.contributor.other Mahidol University. Faculty of Science en
dc.contributor.other Huachiew Chalermprakiet University. Faculty of Science and Technology en
dc.contributor.other Mahidol University. Faculty of Science en
dc.date.accessioned 2025-06-14T11:48:18Z
dc.date.available 2025-06-14T11:48:18Z
dc.date.issued 2017
dc.identifier.citation Biomed Pharmacother 2017 Oct:94:820-826. en
dc.identifier.other doi: 10.1016/j.biopha.2017.07.165
dc.identifier.uri https://has.hcu.ac.th/jspui/handle/123456789/3974
dc.description สามารถเข้าถึงบทความฉบับเต็ม (Full Text) ได้ที่ : https://pubmed.ncbi.nlm.nih.gov/28802235/ en
dc.description.abstract Malfunction of polycystin 1 (PC1) is linked to abnormally high epithelial cell proliferation and fluid secretion, eventually leading to renal cyst development and declined renal function as found in autosomal dominant polycystic kidney disease (ADPKD). Currently, there is no effective therapy for ADPKD. Recent studies report PC1 regulates CFTR chloride channels and β-catenin levels in normal renal epithelial cells. Concurrently, our previous study found steviol retarded renal cyst enlargement in an in vitro and in an in vivo models by reducing CFTR expression and activity. Therefore, a potential relationship between steviol and PC1 is worthy of exploration. The present study was aimed to determine the effect of steviol on PC1, CFTR, and β-catenin levels in renal epithelial cells with defective PC1 biogenesis and expression (Prkcsh-/- cell) and postnatal Pkd1 homozygous cell (Pkd1-/- cells). Using western blot analysis, it was found that steviol treatment at 100μM for 24-48h substantially enhanced and stabilized PC1 C-terminal expression, while decreasing CFTR and β-catenin protein expression in both Prkcsh-/- and Pkd1-/- cells. In addition, steviol promoted LAMP2 expression, a lysosomal enzyme marker. Interestingly, hydroxychloroquine (a lysosome inhibitor) treatment abolished steviol's effect in reducing CFTR and β-catenin protein expression. Taken together, these findings suggest steviol slows cyst progression in cells and animal models of PKD, in part, by enhancing and stabilizing PC1 protein expression as well as by promoting lysosomal degradation of CFTR and β-catenin. Therefore, steviol may represent a promising compound for treatment of polycystic kidney disease. en
dc.language.iso en_US en
dc.subject Polycystin 1 en
dc.subject โพลีซิสติน 1 en
dc.subject Autosomal dominant polycystic kidney disease en
dc.subject โรคถุงน้ำในไตชนิดถ่ายทอดแบบลักษณะเด่น en
dc.subject Kidneys – Diseases en
dc.subject ไต – โรค en
dc.subject Steviol en
dc.subject สตีวิออล en
dc.subject β-catenin en
dc.subject เบต้า-คาเทนิน en
dc.title Steviol stabilizes polycystin 1 expression and promotes lysosomal degradation of CFTR and β-catenin proteins in renal epithelial cells en
dc.type Article en


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