足细胞
阿尔波特综合征
肾小球基底膜
肾炎
生物
促炎细胞因子
肾小球硬化
肾小球肾炎
表型
蛋白尿
内分泌学
内科学
尼福林
肾
免疫学
医学
基因
炎症
遗传学
作者
Ryosuke Fukuda,Mary Ann Suico,Yukari Kai,Kohei Omachi,Keishi Motomura,Tomoaki Koga,Yoshihiro Komohara,Kosuke Koyama,Tsubasa Yokota,Manabu Taura,Tsuyoshi Shuto,Hirofumi Kai
出处
期刊:Journal of The American Society of Nephrology
日期:2015-05-13
卷期号:27 (1): 144-157
被引量:23
标识
DOI:10.1681/asn.2014111109
摘要
Alport syndrome (AS) is one of the most common types of inherited nephritis caused by mutation in one of the glomerular basement membrane components. AS is characterized by proteinuria at early stage of the disease and glomerular hyperplastic phenotype and renal fibrosis at late stage. Here, we show that global deficiency of tumor suppressor p53 significantly accelerated AS progression in X-linked AS mice and decreased the lifespan of these mice. p53 protein expression was detected in 21-week-old wild-type mice but not in age-matched AS mice. Expression of proinflammatory cytokines and profibrotic genes was higher in p53(+/-) AS mice than in p53(+/+) AS mice. In vitro experiments revealed that p53 modulates podocyte migration and positively regulates the expression of podocyte-specific genes. We established podocyte-specific p53 (pod-p53)-deficient AS mice, and determined that pod-p53 deficiency enhanced the AS-induced renal dysfunction, foot process effacement, and alteration of gene-expression pattern in glomeruli. These results reveal a protective role of p53 in the progression of AS and in maintaining glomerular homeostasis by modulating the hyperplastic phenotype of podocytes in AS.
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