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葡萄糖诱导的培养人肾小球上皮细胞的渐进性表型调节可能独立于肾母细胞瘤1(WT1)。

Glucose-induced gradual phenotypic modulation of cultured human glomerular epithelial cells may be independent of Wilms' tumor 1 (WT1).

作者信息

Tsotakos Nikolaos E, Sagnou Marina, Kotsopoulou Eleni S, Tsilibary Effie C, Drossopoulou Garyfalia I

机构信息

Institute of Biosciences and Applications, National Centre for Scientific Research Demokritos, Athens, Greece.

出版信息

BMC Cell Biol. 2013 Jun 14;14:28. doi: 10.1186/1471-2121-14-28.

Abstract

BACKGROUND

Renal podocytes form the main filtration barrier possessing a unique phenotype maintained by proteins including podocalyxin and nephrin, the expression of which is suppressed in pathological conditions. We used an in vitro model of human glomerular epithelial cells (HGEC) to investigate the role of high glucose in dysregulating the podocytic epithelial phenotype and determined the time needed for this change to occur.

RESULTS

In our in vitro podocyte system changes indicating podocyte dedifferentiation in the prolonged presence of high glucose included loss of podocalyxin, nephrin and CD10/CALLA concomitant with upregulation of mesenchymal vimentin. Our study demonstrates for the first time that podocyte-specific markers undergo changes of expression at different time intervals, since glucose-mediated podocalyxin downregulation is a progressive process that precedes downregulation of nephrin expression. Finally we demonstrate that high glucose permanently impaired WT1 binding to the podocalyxin gene promoter region but did not affect WT1 binding on the nephrin gene promoter region.

CONCLUSION

The presence of high glucose induced a phenotypic conversion of podocytes resembling partial dedifferentiation. Our study demonstrates that dysregulation of the normal podocytic phenotype is an event differentially affecting the expression of function-specific podocytic markers, exhibiting downregulation of the epithelial marker CD10/CALLA and PC first, followed by stably downregulated nephrin. Furthermore, it is herein suggested that WT1 may not be directly involved with upregulation of previously reduced PC and nephrin expression.

摘要

背景

肾足细胞形成主要的滤过屏障,具有由包括足细胞表面蛋白和nephrin在内的蛋白质维持的独特表型,这些蛋白质的表达在病理状态下会受到抑制。我们使用人肾小球上皮细胞(HGEC)的体外模型来研究高糖在调节足细胞上皮表型失调中的作用,并确定这种变化发生所需的时间。

结果

在我们的体外足细胞系统中,长时间处于高糖环境下表明足细胞去分化的变化包括足细胞表面蛋白、nephrin和CD10/CALLA的丢失,同时间充质波形蛋白上调。我们的研究首次表明,足细胞特异性标志物在不同时间间隔会发生表达变化,因为葡萄糖介导的足细胞表面蛋白下调是一个渐进过程,先于nephrin表达下调。最后我们证明,高糖永久性损害WT1与足细胞表面蛋白基因启动子区域的结合,但不影响WT1与nephrin基因启动子区域的结合。

结论

高糖的存在诱导了足细胞的表型转化,类似于部分去分化。我们的研究表明,正常足细胞表型的失调是一个差异性影响功能特异性足细胞标志物表达的事件,首先表现为上皮标志物CD10/CALLA和PC的下调,随后是nephrin的稳定下调。此外,本文提示WT1可能不直接参与先前降低的PC和nephrin表达的上调。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4abf/3686613/c806979c5824/1471-2121-14-28-1.jpg

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