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Neovascularization in the pulmonary endothelium is regulated by the endosome: Rab4-mediated trafficking and p18-dependent signaling

机译:肺内皮中的新血管形成受内体调控:Rab4介导的运输和p18依赖性信号传导

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摘要

Neovascularization, the formation of new blood vessels, requires multiple processes including vascular leak, migration, and adhesion. Endosomal proteins, such as Rabs, regulate trafficking of key signaling proteins involved in neovascularization. The novel endosome protein, p18, enhances vascular endothelial (VE)-cadherin recycling from early endosome to cell junction to improve pulmonary endothelial barrier function. Since endothelial barrier integrity is vital in neovascularization, we sought to elucidate the role for endosome proteins p18 and Rab4, Rab7, and Rab9 in the process of vessel formation within the pulmonary vasculature. Overexpression of wild-type p18 (p18wt), but not the nonendosomal-binding mutant (p18N39), significantly increased lung microvascular endothelial cell migration, adhesion, and both in vitro and in vivo tube formation. Chemical inhibition of mTOR or p38 attenuated the proneovascularization role of p18wt. Similar to the effect of p18wt, overexpression of prorecycling wild-type (Rab4WT) and endosome-anchored (Rab4Q67L) Rab4 enhanced neovascularization processes, whereas molecular inhibition of Rab4, by using the nonendosomal-binding mutant (Rab4S22N) attenuated VEGF-induced neovascularization. Unlike p18, Rab4-induced neovascularization was independent of mTOR or p38 inhibition but was dependent on p18 expression. This study shows for the first time that neovascularization within the pulmonary vasculature is dependent on the prorecycling endocytic proteins Rab4 and p18.
机译:新血管形成是新血管的形成,需要多个过程,包括血管渗漏,迁移和粘附。内体蛋白(例如Rabs)调节涉及新血管形成的关键信号蛋白的运输。新型的内体蛋白p18增强了从早期内体到细胞连接的血管内皮(cad)钙粘蛋白的再循环,从而改善了肺内皮屏障的功能。由于内皮屏障的完整性在新血管形成中至关重要,因此我们试图阐明内体蛋白p18和Rab4,Rab7和Rab9在肺血管内血管形成过程中的作用。过度表达野生型p18(p18 wt )而非非内体结合突变体(p18 N39 )显着增加了肺微血管内皮细胞的迁移,粘附和两者体外和体内管形成。对mTOR或p38的化学抑制作用减弱了p18 wt 的促血管新生作用。与p18 wt 的作用相似,过度表达的前循环野生型(Rab4 WT )和内体锚定(Rab4 Q67L )Rab4增强了新血管形成通过使用非内体结合突变体(Rab4 S22N )对Rab4进行分子抑制,可以减弱VEGF诱导的新血管形成。与p18不同,Rab4诱导的新血管形成独立于mTOR或p38抑制,但取决于p18表达。这项研究首次表明,肺血管内的新血管形成取决于前循环的内吞蛋白Rab4和p18。

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