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首页> 外文期刊>Journal of Molecular Neuroscience: MN >Functions for the cAMP/Epac/Rap1 Signaling Pathway in Low-Dose Endothelial Monocyte-Activating Polypeptide-II-Induced Opening of Blood-Tumor Barrier
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Functions for the cAMP/Epac/Rap1 Signaling Pathway in Low-Dose Endothelial Monocyte-Activating Polypeptide-II-Induced Opening of Blood-Tumor Barrier

机译:cAMP / Epac / Rap1信号通路在低剂量内皮单核细胞活化多肽-II诱导的血肿瘤屏障开放中的功能

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摘要

Previous studies have demonstrated that low-dose endothelial monocyte-activating polypeptide-II (EMAP-II) induces blood-tumor barrier (BTB) hyperpermeability via both paracellular and transcellular pathways. In a recent study, we revealed that cAMP/PKA-dependent and cAMP/PKA-independent signaling pathways are both involved in EMAP-II-induced BTB hyperpermeability. The present study further investigated the exact mechanisms through which the cAMP/PKA-independent signaling pathway affects EMAP-II-induced BTB hyperpermeability. In an in vitro BTB model, low-dose EMAP-II (0.05 nM) induced a significant decrease in Rap1 activity in RBMECs. Pretreatment with forskolin to elevate intracellular cAMP concentration completely blocked EMAP-II-induced Rap1 inactivation. Epac/Rap1 activation by 8-pCPT-2'-O-Me-cAMP significantly prevented EMAP-II-induced activation of RhoA/ROCK. Furthermore, 8-pCPT-2'-O-Me-cAMP pretreatment significantly inhibited EMAP-II-induced decreases in TEER and increases in HRP flux. Pretreatment also significantly prevented EMAP-II-induced changes in MLC phosphorylation, actin cytoskeleton arrangement, and expression and distribution of ZO-1 in RBMECs. This study demonstrates that the cAMP/Epac/Rap1 signaling cascade is a crucial pathway in EMAP-II-induced BTB hyperpermeability.
机译:先前的研究表明,低剂量的内皮单核细胞活化多肽-II(EMAP-II)通过细胞旁和跨细胞途径诱导血液肿瘤屏障(BTB)的通透性过高。在最近的研究中,我们揭示了cAMP / PKA依赖性和cAMP / PKA依赖性信号通路均与EMAP-II诱导的BTB高通透性有关。本研究进一步研究了cAMP / PKA独立信号通路影响EMAP-II诱导的BTB高通透性的确切机制。在体外BTB模型中,低剂量EMAP-II(0.05 nM)导致RBMEC中Rap1活性显着降低。用福司可林进行预处理以提高细胞内cAMP的浓度可以完全阻断EMAP-II诱导的Rap1失活。 8-pCPT-2'-O-Me-cAMP激活Epac / Rap1可以显着阻止EMAP-II诱导的RhoA / ROCK激活。此外,8-pCPT-2'-O-Me-cAMP预处理可显着抑制EMAP-II诱导的TEER下降和HRP通量的增加。预处理还可以显着防止EMAP-II引起的MLC磷酸化,肌动蛋白细胞骨架排列以及ZO-1在RBMEC中的表达和分布的变化。这项研究表明,cAMP / Epac / Rap1信号级联是EMAP-II诱导的BTB高通透性的关键途径。

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