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Clusterin deficiency induces lipid accumulation and tissue damage in kidney

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Author(s)
Jung-Yoon HeoJi-Eun KimYongwook DanYong-Woon KimJong-Yeon KimKyu Hyang ChoYoung Kyung BaeSeung-Soon ImKwang-Hyeon LiuIn-Hwan SongJae-Ryong KimIn-Kyu LeeSo-Young Park
Keimyung Author(s)
Im, Seung Soon
Department
Dept. of Physiology (생리학)
Journal Title
Journal of Endocrinology
Issued Date
2018
Volume
237
Issue
2
Keyword
SREBPTGFB1chronic kidney diseaseclusterinlipid metabolism
Abstract
Clusterin is a secretory glycoprotein that is involved in multiple physiopathological processes, including lipid metabolism. Previous studies have shown that clusterin prevents hepatic lipid accumulation via suppression of sterol regulatory element-binding protein (SREBP) 1. In this study, we examined the role of clusterin in renal lipid accumulation in clusterin-knockout mice and NRK52e tubular epithelial cells. Clusterin deficiency increased the expression of SREBP1 and its target genes and decreased malonyl-CoA decarboxylase protein levels in the kidney. Expression of the endocytic receptor, megalin, and scavenger receptor class A was increased in clusterin-deficient mice. Functional analysis of lipid metabolism also revealed that lipid uptake and triglyceride synthesis were increased and fatty acid oxidation was reduced, leading to increased lipid accumulation in clusterin-deficient mice. These phenomena were accompanied by mesangial expansion, fibrosis and increased urinary protein-to-creatinine ratio. High-fat feeding aggravated these clusterin deficiency-induced pathological changes. Clusterin knockdown in NRK52e cells increased lipogenic gene expression and lipid levels, whereas overexpression of clusterin by treatment with adenovirus or recombinant clusterin protein suppressed lipogenic gene expression and lipid levels. Transforming growth factor-beta 1 (TGFB1) expression increased in the kidney of clusterin-deficient mice and suppression of TGFB1 in NRK52e cells suppressed lipid accumulation. These results suggest that clusterin deficiency induces renal lipid accumulation by dysregulating the expression of lipid metabolism-related factors and TGFB1, thereby leading to chronic kidney disease. Hence, clusterin may serve as a therapeutic target for lipid-induced chronic kidney disease.
Keimyung Author(s)(Kor)
임승순
Publisher
School of Medicine (의과대학)
Citation
Jung-Yoon Heo et al. (2018). Clusterin deficiency induces lipid accumulation and tissue damage in kidney. Journal of Endocrinology, 237(2), 175–191. doi: 10.1530/JOE-17-0453
Type
Article
ISSN
0022-0795
Source
https://joe.bioscientifica.com/view/journals/joe/237/2/JOE-17-0453.xml
DOI
10.1530/JOE-17-0453
URI
https://kumel.medlib.dsmc.or.kr/handle/2015.oak/41134
Appears in Collections:
1. School of Medicine (의과대학) > Dept. of Physiology (생리학)
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