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沉默 Stat1 通过 Forkhead 转录因子 O1 调控氧化应激反应对高糖诱导的足细胞损伤的保护作用。

Protective effect of silencing Stat1 on high glucose-induced podocytes injury via Forkhead transcription factor O1-regulated the oxidative stress response.

机构信息

Department of Nephrology, The First Affiliated Hospital of Baotou Medical College Inner Mongolia University of Science and Technology, Baotou, China.

Department of Nephrology, North Hospital, Baotou, China.

出版信息

BMC Mol Cell Biol. 2019 Jul 23;20(1):27. doi: 10.1186/s12860-019-0209-0.

Abstract

BACKGROUND

Podocyte plays an important role in maintaining the integrity and function of the glomerular filtration barrier. Various studies reported that forkhead transcription factor (Fox) O1 played a key role in anti-oxidative signaling. This study aimed to investigate the role of Stat1 in high glucose (HG) -induced podocyte injury.

METHODS

Under normal glucose, hypertonic and HG stimulated podocyte conditions, cell counting kit-8 (CCK-8) assay, flow cytometry and western blot and quantitative real-time polymerase chain reaction (qRT-PCR) were respectively carried out to determine cell viability, apoptosis, reactive oxygen species (ROS) production and related genes expressions. We then respectively used silent Stat1, simultaneous silencing Stat1 and FoxO1 and over-expression of FoxO1, to observe whether they/it could reverse the damage of podocytes induced by HG.

RESULTS

High glucose attenuated cell survival and promoted cell apoptosis in MPC-5 cells at the same time, and it was also observed to promote the protein expression of Stat1 and the FoxO1 expression inhibition. Silencing Stat1 could reverse HG-induced podocytes injury. Specifically, siStat1 increased cell viability, inhibited cell apoptosis and attenuated ROS level in a high-glucose environment. Cleaved caspase-3 and pro-apoptosis protein Bax was significantly down-regulated, and anti-apoptosis protein Bcl-2 was up-regulated by siStat1. The antioxidant genes Catalase, MnSOD, NQO1 and HO1 were up-regulated by siStat1. We found that silencing FoxO1 reversed the protective effect of siStat1 on the HG-induced podocytes injury.

CONCLUSIONS

Silencing Stat1 could reverse the effects of high glucose-triggered low cell viability, cell apoptosis and ROS release and the functions of Stat1 might be involved in FoxO1 mediated-oxidative stress in nucleus.

摘要

背景

足细胞在维持肾小球滤过屏障的完整性和功能方面起着重要作用。各种研究表明,叉头转录因子(Fox)O1 在抗氧化信号中起着关键作用。本研究旨在探讨 Stat1 在高葡萄糖(HG)诱导的足细胞损伤中的作用。

方法

在正常葡萄糖、高渗和 HG 刺激足细胞条件下,分别采用细胞计数试剂盒-8(CCK-8)检测、流式细胞术和 Western blot 及实时定量聚合酶链反应(qRT-PCR)检测细胞活力、细胞凋亡、活性氧(ROS)产生和相关基因表达。然后分别采用沉默 Stat1、同时沉默 Stat1 和 FoxO1 以及过表达 FoxO1 的方法,观察它们是否能逆转 HG 诱导的足细胞损伤。

结果

高葡萄糖同时减弱 MPC-5 细胞的细胞活力并促进细胞凋亡,同时还观察到促进 Stat1 蛋白表达和 FoxO1 表达抑制。沉默 Stat1 可逆转 HG 诱导的足细胞损伤。具体来说,siStat1 在高葡萄糖环境中增加细胞活力、抑制细胞凋亡并减弱 ROS 水平。Cleaved caspase-3 和促凋亡蛋白 Bax 显著下调,而抗凋亡蛋白 Bcl-2 上调。抗氧化基因 Catalase、MnSOD、NQO1 和 HO1 被 siStat1 上调。我们发现,沉默 FoxO1 逆转了 siStat1 对 HG 诱导的足细胞损伤的保护作用。

结论

沉默 Stat1 可以逆转高葡萄糖触发的低细胞活力、细胞凋亡和 ROS 释放的作用,Stat1 的功能可能涉及 FoxO1 介导的核内氧化应激。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b5d3/6652005/b5ad3d991aad/12860_2019_209_Fig1_HTML.jpg

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