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FBXW7 regulates endothelial barrier function by suppression of the cholesterol synthesis pathway and prenylation of RhoB

机译:FBXW7通过抑制胆固醇合成途径和RhoB的异戊烯化作用来调节内皮屏障功能

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摘要

Rho GTPases control both the actin cytoskeleton and adherens junction stability and are recognized as essential regulators of endothelial barrier function. They act as molecular switches and are primarily regulated by the exchange of GDP and GTP. However, posttranslational modifications such as phosphorylation, prenylation, and ubiquitination can additionally alter their localization, stability, and activity. F-box proteins are involved in the recognition of substrate proteins predestined for ubiquitination and subsequent degradation. Given the importance of ubiquitination, we studied the effect of the loss of 62 members of the F-box protein family on endothelial barrier function in human umbilical vein endothelial cells. Endothelial barrier function was quantified by electrical cell impedance sensing and macromolecule passage assay. Our RNA interference–based screen identified FBXW7 as a key regulator of endothelial barrier function. Mechanistically, loss of FBXW7 induced the accumulation of the RhoB GTPase in endothelial cells, resulting in their increased contractility and permeability. FBXW7 knockdown induced activation of the cholesterol biosynthesis pathway and changed the prenylation of RhoB. This effect was reversed by farnesyl transferase inhibitors and by the addition of geranylgeranyl pyrophosphate. In summary, this study identifies FBXW7 as a novel regulator of endothelial barrier function in vitro. Loss of FBXW7 indirectly modulates RhoB activity via alteration of the cholesterol biosynthesis pathway and, consequently, of the prenylation status and activity of RhoB, resulting in increased contractility and disruption of the endothelial barrier.
机译:Rho GTPases控制肌动蛋白的细胞骨架和粘附连接的稳定性,并被认为是内皮屏障功能的重要调节剂。它们充当分子开关,主要受GDP和GTP交换的调节。但是,翻译后修饰(例如磷酸化,戊烯基化和泛素化)可以另外改变其定位,稳定性和活性。 F-box蛋白参与对预定泛素化和随后降解的底物蛋白的识别。考虑到泛素化的重要性,我们研究了F-box蛋白家族中62个成员的丢失对人脐静脉内皮细胞内皮屏障功能的影响。内皮屏障功能通过细胞阻抗传感和大分子传代测定进行定量。我们基于RNA干扰的筛查确定FBXW7是内皮屏障功能的关键调节剂。从机制上讲,FBXW7的缺失诱导了RhoB GTPase在内皮细胞中的积累,从而导致它们的收缩性和通透性增加。 FBXW7敲低诱导胆固醇生物合成途径的激活,并改变RhoB的异戊二烯化。法呢基转移酶抑制剂和添加香叶基香叶基焦磷酸酯可以逆转这种作用。总之,这项研究确定了FBXW7是体外内皮屏障功能的新型调节剂。 FBXW7的丢失通过胆固醇生物合成途径的改变间接地调节RhoB的活性,进而改变RhoB的异戊二烯化状态和活性,从而导致收缩力增加和内皮屏障的破坏。

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