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首页> 外文期刊>American Journal of Physiology >VASP is involved in cAMP-mediated Rac 1 activation in microvascular endothelial cells
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VASP is involved in cAMP-mediated Rac 1 activation in microvascular endothelial cells

机译:VASP参与营地介导的RAC 1在微血管内皮细胞中的激活

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Accumulating evidence points to a significant role of vasodilator-stimulated phosphoprotein (VASP) in the maintenance of endothelial barrier functions. We have recently shown that impaired barrier functions in VASP-deficient microvascular myocardial endothelial cells (MyEnd VASP/) correlated with decreased Rac 1 activity. To further test the hypothesis that VASP is involved in regulation of Rac 1 activity, we studied cAMP-dependent Rac 1 activation. Both inhibition of Rac 1 activation by NSC-23766 and inhibition of PKA by PKI completely blunted the efficacy of forskolin/rolipram (F/R)-mediated cAMP increase to stabilize barrier functions as revealed by measurements of transendothelial resistance (TER). Because these results indicate that PKA/Rac 1 activation is important for barrier stabilization, we tested this signaling pathway in VASP/ cells. We found that F/R and isoproterenol reduced permeability measured as FITC-dextran flux across VASP/ monolayers, but not below baseline levels of wild-type cells (WT). Moreover, cAMP-mediated Rac 1 activation was reduced to <50% of WT levels, and both PKA inhibition by PKI and PKA anchoring via A kinase anchoring peptides (AKAPs) by HT31 almost completely abolished Rac 1 activation in VASP/ and WT endothelium. Accordingly, HT31 significantly reduced F/R-mediated TER increase in WT cells and completely blocked the protective effect of cAMP on endothelial barrier properties. Together, our data underline the significant role of cAMP-mediated Rac 1 activation for endothelial barrier stabilization and demonstrate that both AKAP-mediated PKA anchoring and VASP are required for this process
机译:积累证据表明血管扩张剂刺激的磷蛋白(VASP)在维持内皮阻隔功能中的重要作用。我们最近表明,VASP缺陷的微血管心肌内皮细胞(DASEND VAS /)中受损的屏障功能与降低的RAC 1活性相关。为了进一步测试VASP参与RAC 1活动的假设,我们研究了CAMP依赖的RAC 1激活。通过NSC-23766抑制RAC 1激活并通过PKI抑制PKA完全钝化了Forskolin / Rolipram(F / R)介导的阵营的功效,以稳定逆势抵抗(TER)揭示的屏障功能。因为这些结果表明PKA / RAC1激活对于阻隔稳定是重要的,因此我们在VASP /细胞中测试了该信号通路。我们发现,F / R和异丙肾上腺素在VASP /单层中测量为FITC-DEXTRAN通量的渗透率,但不低于野生型细胞(WT)的基线水平。此外,CAMP介导的RAC 1激活减少到WT水平的<50%,PKI和PKA通过HT31通过激酶锚固肽(Akaps)锚固的PKA抑制几乎完全被废除在VASP /和WT内皮中的RAC 1活化。因此,HT31显着降低了WT细胞的F / R介导的TER增加,并完全阻断了CAMP对内皮阻隔性能的保护作用。我们的数据在一起强调阵营介导的RAC 1激活对内皮屏障稳定的显着作用,并证明了这种过程需要介导的PKA锚固和VASP

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