Keap1 as Target of Genistein on Nrf2 Signaling Pathway Antagonizing Aβ induced Oxidative Damage of Cerebrovascular Endothelial Cells.

IF 2 4区 医学 Q3 CLINICAL NEUROLOGY Current neurovascular research Pub Date : 2022-04-06 DOI:10.2174/1567202619666220406100320
Y. Xi, Yafei Chi, Jing Han, Hong-R Li, Xianyun Wang, Xuan Wang, Tiantian Li, Hui-yan Yu, Rong Xiao
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引用次数: 2

Abstract

BACKGROUND β-amyloid peptides (Aβ) induced oxidative damage contributes to the pathogenesis of neurodegenerative diseases and cerebrovascular system is more vulnerable to oxidative stress. Our earlier study showed a clue that Genistein (Gen) might activate Nf-E2 related factor 2 (Nrf2) pathway to protect cerebrovascular cells from oxidative damage induced by Aβ, but the specific mechanisms and regulation targets are unclear. OBJECTIVE In this study, the anti-oxidative effects and the possible targets of Gen on regulating Nrf2 pathway in bEnd.3 cells were investigated. Cells were divided into control, Aβ25-35, Gen and Gen+Aβ25-35 groups. METHODS Cell viability, levels of malondialdehyde (MDA), Superoxide Dismutase (SOD) activity and nitrotyrosine were evaluated. Moreover, mRNA and/or protein expressions of Nrf2 and kelch-like ECH-associated protein 1 (Keap1) were measured. Then we transfected Keap1 over-expressed plasmid into bEnd.3 cells and measured the protein expressions of Nrf2 pathway related factors. Data showed that Gen could inhibit the over-production of MDA and nitrotyrosine and activate SOD activity. Besides we got the phenomenon that Gen could up-regulate the mRNA and protein expressions of Nrf2 and down-regulate Keap1 protein expression, the Keap1 over-expressed plasmid study indicated that the up-regulation of Nrf2 protein expression induced by pretreatment of Gen could be blocked by the transfection of Keap1 over-expressed plasmid, and the same results also occurred in Nrf2 downstream factors. CONCLUSION Gen could alleviate the cerebrovascular cells oxidative damage induced by Aβ25-35 through regulating Nrf2 pathway, and Keap1 might be one of the targets of Gen on activating Nrf2 pathway.
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Keap1作为染料木素Nrf2信号通路的靶点拮抗Aβ诱导的脑血管内皮细胞氧化损伤
β-淀粉样肽(Aβ)诱导的氧化损伤参与神经退行性疾病的发病机制,而脑血管系统更容易受到氧化应激的影响。我们的前期研究提示染料木黄酮可能激活Nf-E2相关因子2 (Nrf2)通路,保护a β诱导的脑血管细胞氧化损伤,但具体机制和调控靶点尚不清楚。目的探讨Gen的抗氧化作用及其调控Nrf2通路的可能靶点。研究3个细胞。细胞分为对照组、Aβ25-35组、Gen组和Gen+Aβ25-35组。方法测定细胞活力、丙二醛(MDA)水平、超氧化物歧化酶(SOD)活性和硝基酪氨酸水平。此外,我们还检测了Nrf2和kelch样ech相关蛋白1 (Keap1)的mRNA和/或蛋白表达。然后将过表达的Keap1质粒转染到bEnd中。并检测Nrf2通路相关因子的蛋白表达。结果表明,Gen能抑制MDA和硝基酪氨酸的过量生成,激活SOD活性。除了我们发现Gen可以上调Nrf2 mRNA和蛋白的表达,下调Keap1蛋白的表达外,对Keap1过表达质粒的研究表明,转染Keap1过表达质粒可以阻断Gen预处理诱导的Nrf2蛋白表达上调,Nrf2下游因子也出现了同样的结果。结论Gen可通过调控Nrf2通路减轻Aβ25-35诱导的脑血管细胞氧化损伤,Keap1可能是Gen激活Nrf2通路的靶点之一。
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来源期刊
Current neurovascular research
Current neurovascular research 医学-临床神经学
CiteScore
3.80
自引率
9.50%
发文量
54
审稿时长
3 months
期刊介绍: Current Neurovascular Research provides a cross platform for the publication of scientifically rigorous research that addresses disease mechanisms of both neuronal and vascular origins in neuroscience. The journal serves as an international forum publishing novel and original work as well as timely neuroscience research articles, full-length/mini reviews in the disciplines of cell developmental disorders, plasticity, and degeneration that bridges the gap between basic science research and clinical discovery. Current Neurovascular Research emphasizes the elucidation of disease mechanisms, both cellular and molecular, which can impact the development of unique therapeutic strategies for neuronal and vascular disorders.
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