Literature DB >> 32949698

Neuroprotective effects of SOX5 against ischemic stroke by regulating VEGF/PI3K/AKT pathway.

Wu Zhang1, Yuqin Wu1, Hong Chen1, Dan Yu2, Jinfeng Zhao3, Jing Chen4.   

Abstract

Ischemic stroke is a common clinical cardiovascular disease and often accompanied by central nervous system injury. It often causes paralysis or loss of motor function after central nervous system injury and significantly reduces the patient's quality of life. At present, there is no effective treatment strategy for nerve damage caused by ischemic stroke. Therefore, it is urgently need to explore effective treatment targets. The protein expression of SOX5, VEGF and apoptosis related proteins were measured by western blot. The mRNA expression of SOX5 and VEGF were detected by RT-qPCR. The concentration of S100B and GFAP which are related to nerve damage were detected using ELISA assay. The transcriptional regulation of SOX5 on VEGF was detected using ChIP-PCR and dual luciferase reporter gene assays. The cell apoptosis was measured by TUNEL assay and cell viability was detected by CCK-8 assay. In our study, we found that the expression of SOX5 was significantly reduced when LPS induced apoptosis in PC-12 cells. Overexpression of SOX5 repaired LPS-induced apoptosis. SOX5 promotes VEGF expression as a transcription factor to activate the PI3K/AKT pathway. VEGF also repairs nerve injury and brain tissue injury caused by ischemic stroke. In conclusion, SOX5 transcription regulates the expression of VEGF to activate the PI3K/AKT pathway, which repaired nerve damage caused by ischemic stroke. Therefore, SOX5 could be a new targetto regulate VEGF which can repair nerve injury induced by ischemic stroke.
Copyright © 2020. Published by Elsevier B.V.

Entities:  

Keywords:  Ischemic stroke; Nerve injury; PI3K/AKT pathway; SOX5; VEGF

Year:  2020        PMID: 32949698     DOI: 10.1016/j.gene.2020.145148

Source DB:  PubMed          Journal:  Gene        ISSN: 0378-1119            Impact factor:   3.688


  7 in total

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7.  Serum Extracellular Vesicle-Derived miR-124-3p as a Diagnostic and Predictive Marker for Early-Stage Acute Ischemic Stroke.

Authors:  Zheng Qi; Yingying Zhao; Yu Su; Bin Cao; Jian-Jun Yang; Qinghe Xing
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  7 in total

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