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Krüppel 样因子 15-NFATc1 轴可改善足细胞损伤:在蛋白尿疾病中使用糖皮质激素的新理论基础。

The Krüppel-like factor 15-NFATc1 axis ameliorates podocyte injury: a novel rationale for using glucocorticoids in proteinuria diseases.

机构信息

Department of Nephrology, Guangdong Provincial People's Hospital, Guangdong Academy of Medical Sciences, Guangdong Provincial Institute of Geriatrics, Guangzhou, 510080, China.

出版信息

Clin Sci (Lond). 2020 Jun 26;134(12):1305-1318. doi: 10.1042/CS20200075.

Abstract

Podocyte injury and loss contribute to proteinuria, glomerulosclerosis and eventually kidney failure. Recent studies have demonstrated that the loss of Kruppel-like factor 15 (KLF15) in podocytes increases the susceptibility to injury; however, the mechanism underlying the protective effects on podocyte injury remains incompletely understood. Herein, we showed that KLF15 ameliorates podocyte injury through suppressing NFAT signaling and the salutary effects of the synthetic glucocorticoid dexamethasone in podocyte were partially mediated by the KLF15-NFATc1 axis. We found that KLF15 was significantly reduced in glomerular cells of proteinuric patients and in ADR-, LPS- or HG-treated podocyets in vitro. Overexpression of KLF15 attenuated podocyte apoptosis induced by ADR, LPS or HG and resulted in decreased expression of pro-apoptotic Bax and increased expression of anti-apoptotic Bcl-2. Conversely, the flow cytometry analysis and TUNEl assay demonstrated that loss of KLF15 accelerated podocyte apoptosis and we further found that 11R-VIVIT, a specific NFAT inhibitor, and NFATc1-siRNA rescued KLF15-deficient induced podocyte apoptosis. Meanwhile, Western blot and RT-qPCR showed that the expression of NFATc1 was up-regulated in KLF15 silenced podocytes and reduced in KLF15 overexpressed podocytes. Mechanistically, ChIP analysis showed that KLF15 bound to the NFATc1 promoter region -1984 to -1861base pairs upstream of the transcription start site and the binding amount was decreased after treatment with LPS. The dual-luciferase reporter assay indicated that NFATc1 was a direct target of KLF15. In addition, we found that in vitro treatment with dexamethasone induced a decrease of NFATc1 expression in podocytes and was abrogated by knockdown of KLF15. Hence, our results identify the critical role of the KLF15-NFATc1 axis in podocyte injury and loss, which may be involved in mediating the salutary effects of dexamethasone in podocytes.

摘要

足细胞损伤和丢失导致蛋白尿、肾小球硬化,最终导致肾衰竭。最近的研究表明,足细胞中 Kruppel 样因子 15(KLF15)的丢失会增加损伤的易感性;然而,其对足细胞损伤的保护作用的机制仍不完全清楚。在此,我们发现 KLF15 通过抑制 NFAT 信号来改善足细胞损伤,而合成糖皮质激素地塞米松在足细胞中的有益作用部分是通过 KLF15-NFATc1 轴介导的。我们发现,在蛋白尿患者的肾小球细胞中和在 ADR、LPS 或 HG 处理的体外足细胞中,KLF15 的表达明显降低。KLF15 的过表达可减轻 ADR、LPS 或 HG 诱导的足细胞凋亡,并导致促凋亡 Bax 的表达减少和抗凋亡 Bcl-2 的表达增加。相反,流式细胞术分析和 TUNEL 检测表明,KLF15 的缺失加速了足细胞凋亡,我们进一步发现,特异性 NFAT 抑制剂 11R-VIVIT 和 NFATc1-siRNA 挽救了 KLF15 缺陷诱导的足细胞凋亡。同时,Western blot 和 RT-qPCR 显示,在 KLF15 沉默的足细胞中 NFATc1 的表达上调,而在 KLF15 过表达的足细胞中表达下调。机制上,ChIP 分析表明,KLF15 结合于 NFATc1 启动子区域-1984 到转录起始位点上游的-1861 个碱基对,并用 LPS 处理后结合量减少。双荧光素酶报告基因检测表明 NFATc1 是 KLF15 的直接靶基因。此外,我们发现体外用地塞米松处理可诱导足细胞中 NFATc1 表达下降,而 KLF15 敲低可消除这种下降。因此,我们的结果确定了 KLF15-NFATc1 轴在足细胞损伤和丢失中的关键作用,这可能涉及介导地塞米松在足细胞中的有益作用。

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