首页> 美国卫生研究院文献>Frontiers in Molecular Neuroscience >MiRNA-200b Regulates RMP7-Induced Increases in Blood-Tumor Barrier Permeability by Targeting RhoA and ROCKII
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MiRNA-200b Regulates RMP7-Induced Increases in Blood-Tumor Barrier Permeability by Targeting RhoA and ROCKII

机译:MiRNA-200b通过靶向RhoA和ROCKII调节RMP7诱导的血液肿瘤屏障通透性增加

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摘要

The primary goals of this study were to investigate the potential roles of miR-200b in regulating RMP7-induced increases in blood-tumor barrier (BTB) permeability and some of the possible molecular mechanisms associated with this effect. Microarray analysis revealed 34 significantly deregulated miRNAs including miR-200b in the BTB as induced by RMP7 and 8 significantly up-regulated miRNAs in the BTB by RMP7. RMP7 induced tight junction (TJ) opening of the BTB, thereby increasing BTB permeability. Associated with this effect of RMP7 was a decrease in miR-200b expression within the human cerebral microvascular endothelial cells line hCMEC/D3 (ECs) of the BTB. Overexpression of miR-200b inhibited endothelial leakage and restored normal transendothelial electric resistance values. A simultaneous shift in occludin and claudin-5 distributions from insoluble to soluble fractions were observed to be significantly reduced. In addition, overexpression of miR-200b inhibited the relocation of occludin and claudin-5 from cellular borders into the cytoplasm as well as the production of stress fiber formation in GECs (ECs with U87 glioma cells co-culturing) of the BTB. MiR-200b silencing produced opposite results as that obtained from that of the miR-200b overexpression group. Overexpression of miR-200b was also associated with a down-regulation in RhoA and ROCKII expression, concomitant with a decrease in BTB permeability. Again, results which were opposite to that obtained with the miR-200b silencing group. We further found that miR-200b regulated BTB permeability by directly targeting RhoA and ROCKII. Collectively, these results suggest that miR-200b's contribution to the RMP7-induced increase in BTB permeability was associated with stress fiber formation and TJ disassembly as achieved by directly targeting RhoA and ROCKII.
机译:这项研究的主要目标是研究miR-200b在调节RMP7诱导的血肿瘤屏障(BTB)通透性增加中的潜在作用,以及与此作用相关的一些可能的分子机制。微阵列分析显示,RMP7诱导BTB中的34个显着失控的miRNA,包括miR-200b,RMP7诱导BTB中的8个显着上调的miRNA。 RMP7诱导BTB的紧密连接(TJ)打开,从而增加BTB的渗透性。与RMP7的这种作用相关的是BTB的人脑微血管内皮细胞系hCMEC / D3(EC)中miR-200b表达的降低。 miR-200b的过表达抑制内皮渗漏并恢复正常的跨内皮电阻值。观察到闭合蛋白和claudin-5分布从不溶级分到可溶级分的同时转移明显减少。另外,miR-200b的过表达抑制了occludin和claudin-5从细胞边界转移到细胞质中,以及在BTB的GEC(EC与U87胶质瘤细胞共培养的EC)中形成了应力纤维。与从miR-200b过表达组获得的结果相反,MiR-200b沉默产生了相反的结果。 miR-200b的过表达还与RhoA和ROCKII表达的下调相关,并伴随BTB通透性的降低。同样,结果与miR-200b沉默组获得的结果相反。我们进一步发现miR-200b通过直接靶向RhoA和ROCKII来调节BTB渗透性。总体而言,这些结果表明,通过直接靶向RhoA和ROCKII,miR-200b对RMP7诱导的BTB渗透性增加的作用与应力纤维形成和TJ拆卸有关。

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