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首页> 外文期刊>Biochemical and Biophysical Research Communications >p22phox promotes Ang-II-induced vascular smooth muscle cell phenotypic switch by regulating KLF4 expression
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p22phox promotes Ang-II-induced vascular smooth muscle cell phenotypic switch by regulating KLF4 expression

机译:通过调节KLF4表达,P22phox促进Ang-II诱导的血管平滑肌细胞表型开关

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摘要

NADPH oxidase (Nox) is the main source of reactive oxygen species in vascular diseases, which have been implicated in promoting VSMCs phenotypic switch. P22phox, the indispensable component of the complex Nox, is required for their activity and stability. Kriippel-like factor 4 (KLF4) is an important transcriptional regulator of VSMCs phenotypic switch. Both KLF4 and p22phox are involved in the proliferation, migration and differentiation of VSMC. This study aims to determine whether and how p22phox regulates KLF4 expression in phenotypic switching of VSMCs. In cultured primary rat VSMCs, we noticed that the expression of P22phox was significantly increased in combination with VSMCs phenotypic switch and up-regulated KLF4 expression in Ang-Il-treated cells. Ang-II-induced VSMC dedifferentiation, proliferation, migration, KLF4 expression, H2O2 production and the phosphorylation of ART, ERK1/2 were all inhibited by knockdown of P22phox. Furthermore, H2O2 treatment effectively enhanced the phosphorylation of ART, ERK1/2 and the expression of KLF4, whereas LY294002 (a specific inhibitor of P13K), U0126 (a specific inhibitor of ERK1/2) significantly attenuated the H2O2-induced up-regulation of KLF4. In conclusion, these results demonstrated that p22phox promotes Ang-II-induced VSMC phenotypic switch via the H2O2-ERK1/2/AKT-KLF4 signaling pathway. (C) 2019 Published by Elsevier Inc.
机译:NADPH氧化酶(NOx)是血管疾病中反应性氧物种的主要来源,其涉及促进VSMCS表型开关。 P22phox,复杂NOx的不可或缺的组分是他们的活动和稳定性所必需的。 Krippel样因子4(KLF4)是VSMCS表型开关的重要转录调节因子。 KLF4和P22phox都参与了VSMC的增殖,迁移和分化。本研究旨在确定P22phox是否和如何调节VSMC的表型切换中的KLF4表达。在培养的原代大鼠VSMC中,我们注意到,在Ang-IL处理的细胞中,与VSMC表型开关和上调的KLF 4表达相结合,P22phox的表达显着增加。 Ang-II诱导的VSMC消除剂,增殖,迁移,KLF4表达,H 2 O 2生产和技术磷酸化,ERK1 / 2都被P 2 2敲击抑制。此外,H 2 O 2处理有效地增强了本领域的磷酸化,ERK1 / 2和KLF4的表达,而LY294002(P13K的特异性抑制剂),U0126(ERK1 / 2的特异性抑制剂)显着减弱了H2O2诱导的上调KLF4。总之,这些结果表明,P22phox通过H2O2-ERK1 / 2 / AKT-KLF4信号通路促进了Ang-II诱导的VSMC表型开关。 (c)2019由elsevier公司出版

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  • 作者单位

    Univ South China Hengyang Med Sch Affiliated Hosp 1 Dept Cardiovasc Med Hengyang 421001;

    Univ South China Hengyang Med Sch Dept Histol &

    Embryol Clin Anat &

    Reprod Med Applicat Inst;

    Univ South China Hengyang Med Sch Affiliated Hosp 1 Dept Cardiovasc Med Hengyang 421001;

    Univ South China Hengyang Med Sch Affiliated Hosp 1 Dept Cardiovasc Med Hengyang 421001;

    Univ South China Hengyang Med Sch Affiliated Hosp 1 Dept Cardiovasc Med Hengyang 421001;

    Univ South China Affiliated Hosp 1 Dept Neurol Hengyang 421001 Peoples R China;

    Univ South China Hengyang Med Sch Affiliated Hosp 1 Dept Cardiovasc Med Hengyang 421001;

    Univ South China Hengyang Med Sch Dept Histol &

    Embryol Clin Anat &

    Reprod Med Applicat Inst;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

    Reactive oxygen species; p22phox; KLF4; Ang-II; VSMC phenotypic switch;

    机译:反应性氧物种;p22phox;klf4;ang-II;VSMC表型开关;

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