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首页> 外文期刊>Cellular and Molecular Neurobiology >Myosin IIA Regulated Tight Junction in Oxygen Glucose-Deprived Brain Endothelial Cells Via Activation of TLR4/PI3K/Akt/JNK1/2/14-3-3 epsilon/NF-B/MMP9 Signal Transduction Pathway
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Myosin IIA Regulated Tight Junction in Oxygen Glucose-Deprived Brain Endothelial Cells Via Activation of TLR4/PI3K/Akt/JNK1/2/14-3-3 epsilon/NF-B/MMP9 Signal Transduction Pathway

机译:肌苷IIA通过活化TLR4 / PI3K / AKT / JNK1 / 2/14-3-3ε/ NF-B / MMP9信号转导通路中肌肌肌菌IA调节氧血糖缺乏的脑内皮细胞的紧密结。

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摘要

Non-muscle myosin heavy chain IIA (NMMHC IIA), a member of Myosin II family, plays a critical role in various cellular physiological processes. Our previous research had suggested that NMMHC IIA could participate in regulating tight junction morphological changes induced by ischemia stroke. Thus, in the current study, we attempted to uncover the regulation pattern of NMMHC IIA on tight junction dysfunction in oxygen glucose-deprived (OGD) mouse brain bEND.3 endothelial cells. The regulation of NMMHC IIA on tight junction in OGD-stimulated bEND.3 cells was evaluated by western blotting assay. Morphologic change of occludin, claudin-5, and ZO-1 tight junction proteins was compared with pretreatment with NMMHC II inhibitor blebbistatin via immunohistochemical staining. Detection of activation of NMMHC IIA on OGD-mediated tight junction transduction pathway was investigated via Koch's postulate using corresponding protein inhibitor. Our results showed that NMMHC IIA was activated in OGD-stimulated bEND.3 endothelial cells. The inhibition of NMMHC IIA could attenuate the morphologic change of occludin, claudin-5, and ZO-1 tight junction proteins. NMMHC IIA participated in regulating downstream transduction pathway TLR4, phosphatidylinositol 3-kinase (PI3K), Akt, JNK1/2, 14-3-3 epsilon, nuclear factor kappa B (NF-kB) and matrix metalloprotein 9 (MMP9). Blocking of these pathways using indicated inhibitors demonstrated that NMMHC IIA destroyed the connection of tight junction via the activation of TLR4/PI3K/Akt/JNK1/2/14-3-3 epsilon/NF-B/MMP9 pathway. Our study described the key role of NMMHC IIA in OGD-stimulated mouse brain bEND.3 endothelial cells, while also exhibited the molecule effect on tight junction dysfunction via TLR4/PI3K/Akt/JNK1/2/14-3-3 epsilon/NF-B/MMP9 signal transduction pathway.
机译:非肌肉肌球蛋白重链IIA(NMMHC IIA)是肌球蛋白II家族的成员,在各种细胞生理过程中起着关键作用。我们以前的研究表明,NMMHC IIA可以参与调节缺血中风诱导的紧密结合形态变化。因此,在目前的研究中,我们试图在氧葡萄糖剥夺(OGD)小鼠脑弯曲中的紧密结功能障碍上揭示NMMHC IIA的调节模式。通过蛋白质印迹测定评估了对OGD刺激的弯曲弯曲的紧密结的NMMHC IIa的调节。将闭塞素,克劳丁-5和ZO-1紧密结蛋白的形态变化与通过免疫组化染色的NMMHC II抑制剂BLEBBASTATIN进行预处理。使用相应的蛋白质抑制剂,通过Koch假设研究了对OGD介导的紧密接线转导途径的NMMHC IIa的检测。我们的研究结果表明,NMMHC IIa在OGD刺激的弯曲型内皮细胞中激活。 NMMHC IIa的抑制可以衰减瘤瘤,克劳丁-5和ZO-1紧密结蛋白的形态变化。 NMMHC IIA参与调节下游转导通路TLR4,磷脂酰肌醇3-激酶(PI3K),AKT,JNK1 / 2,14-3-3ε,核因子Kappa B(NF-KB)和基质金属蛋白9(MMP9)。使用所指示的抑制剂阻断这些途径证明NMMHC IIA通过TLR4 / PI3K / AKT / JNK1 / 2/14-3-3ε/ NF-B / MMP9途径的激活破坏了紧密结的连接。我们的研究描述了NMMHC IIA在OGD刺激的小鼠脑弯曲中的关键作用。同时还通过TLR4 / PI3K / AKT / JNK1 / 2 / 14-3-3 epsilon / NF表现出对紧密结功能障碍的分子效应-b / mmp9信号转导通路。

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