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高糖诱导的活性氧通过Snail和EZH2依赖的E-钙黏蛋白抑制促进人间充质干细胞迁移。

High Glucose-Induced Reactive Oxygen Species Stimulates Human Mesenchymal Stem Cell Migration Through Snail and EZH2-Dependent E-Cadherin Repression.

作者信息

Oh Ji Young, Choi Gee Euhn, Lee Hyun Jik, Jung Young Hyun, Ko So Hee, Chae Chang Woo, Kim Jun Sung, Kim Seo Yihl, Lim Jae Ryong, Lee Chang-Kyu, Han Ho Jae

机构信息

Department of Agricultural Biotechnology, Animal Biotechnology Major, and Research Institute of Agriculture and Life Science, Seoul National University, Seoul, Republic of Korea.

Department of Veterinary Physiology, College of Veterinary Medicine, Research Institute for Veterinary Science, and BK21 PLUS Program for Creative Veterinary Science Research, Seoul National University, Seoul, Republic of Korea.

出版信息

Cell Physiol Biochem. 2018;46(5):1749-1767. doi: 10.1159/000489360. Epub 2018 Apr 25.

Abstract

BACKGROUND/AIMS: Glucose plays an important role in stem cell fate determination and behaviors. However, it is still not known how glucose contributes to the precise molecular mechanisms responsible for stem cell migration. Thus, we investigate the effect of glucose on the regulation of the human umbilical cord blood-derived mesenchymal stem cell (hUCB-MSC) migration, and analyze the mechanism accompanied by this effect.

METHODS

Western blot analysis, wound healing migration assays, immunoprecipitation, and chromatin immunoprecipitation assay were performed to investigate the effect of high glucose on hUCB-MSC migration. Additionally, hUCB-MSC transplantation was performed in the mouse excisional wound splinting model.

RESULTS

High concentration glucose (25 mM) elicits hUCB-MSC migration compared to normal glucose and high glucose-pretreated hUCB-MSC transplantation into the wound sites in mice also accelerates skin wound repair. We therefore elucidated the detailed mechanisms how high glucose induces hUCB-MSC migration. We showed that high glucose regulates E-cadherin repression through increased Snail and EZH2 expressions. And, we found high glucose-induced reactive oxygen species (ROS) promotes two signaling; JNK which regulates γ-secretase leading to the cleavage of Notch proteins and PI3K/Akt signaling which enhances GSK-3β phosphorylation. High glucose-mediated JNK/Notch pathway regulates the expression of EZH2, and PI3K/Akt/GSK-3β pathway stimulates Snail stabilization, respectively. High glucose enhances the formation of EZH2/Snail/HDAC1 complex in the nucleus, which in turn causes E-cadherin repression.

CONCLUSION

This study reveals that high glucose-induced ROS stimulates the migration of hUCB-MSC through E-cadherin repression via Snail and EZH2 signaling pathways.

摘要

背景/目的:葡萄糖在干细胞命运决定和行为中发挥着重要作用。然而,葡萄糖如何促成负责干细胞迁移的精确分子机制仍不清楚。因此,我们研究了葡萄糖对人脐带血间充质干细胞(hUCB-MSC)迁移调控的影响,并分析了伴随这种影响的机制。

方法

进行蛋白质免疫印迹分析、伤口愈合迁移试验、免疫沉淀和染色质免疫沉淀试验,以研究高糖对hUCB-MSC迁移的影响。此外,在小鼠切除伤口夹板模型中进行hUCB-MSC移植。

结果

与正常葡萄糖相比,高浓度葡萄糖(25 mM)可诱导hUCB-MSC迁移,并且将高糖预处理的hUCB-MSC移植到小鼠伤口部位也可加速皮肤伤口修复。因此,我们阐明了高糖诱导hUCB-MSC迁移的详细机制。我们发现高糖通过增加Snail和EZH2的表达来调节E-钙黏蛋白的抑制。并且,我们发现高糖诱导的活性氧(ROS)促进两种信号传导;JNK调节γ-分泌酶导致Notch蛋白的切割,PI3K/Akt信号传导增强GSK-3β磷酸化。高糖介导的JNK/Notch途径调节EZH2的表达,PI3K/Akt/GSK-3β途径分别刺激Snail的稳定性。高糖增强了细胞核中EZH2/Snail/HDAC1复合物的形成,进而导致E-钙黏蛋白的抑制。

结论

本研究表明,高糖诱导的ROS通过Snail和EZH2信号通路抑制E-钙黏蛋白,从而刺激hUCB-MSC的迁移。

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