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多种 Rap1 效应物控制 Epac1 介导的内皮细胞连接的收紧。

Multiple Rap1 effectors control Epac1-mediated tightening of endothelial junctions.

机构信息

Oncode Institute, Molecular Cancer Research, Center for Molecular Medicine, University Medical Center Utrecht, Utrecht University , Universiteitsweg 100, CG Utrecht, The Netherlands.

出版信息

Small GTPases. 2020 Sep;11(5):346-353. doi: 10.1080/21541248.2018.1431512. Epub 2018 Feb 17.

Abstract

Epac1 and Rap1 mediate cAMP-induced tightening of endothelial junctions. We have previously found that one of the mechanisms is the inhibition of Rho-mediated tension in radial stress fibers by recruiting the RhoGAP ArhGAP29 in a complex containing the Rap1 effectors Rasip1 and Radil. However, other mechanisms have been proposed as well, most notably the induction of tension in circumferential actin cables by Cdc42 and its GEF FGD5. Here, we have investigated how Rap1 controls FGD5/Cdc42 and how this interconnects with Radil/Rasip1/ArhGAP29. Using endothelial barrier measurements, we show that Rho inhibition is not sufficient to explain the barrier stimulating effect of Rap1. Indeed, Cdc42-mediated tension is induced at cell-cell contacts upon Rap1 activation and this is required for endothelial barrier function. Depletion of potential Rap1 effectors identifies AF6 to mediate Rap1 enhanced tension and concomitant Rho-independent barrier function. When overexpressed in HEK293T cells, AF6 is found in a complex with FGD5 and Radil. From these results we conclude that Rap1 utilizes multiple pathways to control tightening of endothelial junctions, possibly through a multiprotein effector complex, in which AF6 functions to induce tension in circumferential actin cables.

摘要

Epac1 和 Rap1 介导 cAMP 诱导的内皮细胞连接紧密。我们之前发现,其中一种机制是通过招募包含 Rap1 效应物 Rasip1 和 Radil 的复合物中的 RhoGAP ArhGAP29 来抑制 Rho 介导的径向应力纤维中的张力。然而,也提出了其他机制,尤其是 Cdc42 及其 GEF FGD5 诱导周向肌动蛋白电缆中的张力。在这里,我们研究了 Rap1 如何控制 FGD5/Cdc42,以及这如何与 Radil/Rasip1/ArhGAP29 相互作用。通过内皮屏障测量,我们表明 Rho 抑制不足以解释 Rap1 的屏障刺激作用。实际上,Rap1 激活时在细胞-细胞连接处诱导 Cdc42 介导的张力,这对于内皮屏障功能是必需的。耗尽潜在的 Rap1 效应物可鉴定出 AF6 介导 Rap1 增强的张力和伴随的 Rho 独立屏障功能。当在 HEK293T 细胞中过表达时,AF6 与 FGD5 和 Radil 形成复合物。根据这些结果,我们得出结论,Rap1 利用多种途径来控制内皮细胞连接的收紧,可能通过多蛋白效应物复合物,其中 AF6 可在周向肌动蛋白电缆中诱导张力。

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