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丝氨酸磷酸化 RhoGEF Trio 稳定内皮细胞-细胞连接。

Serine phosphorylation of the RhoGEF Trio stabilizes endothelial cell-cell junctions.

机构信息

Department of Molecular Hematology, Sanquin Research and Landsteiner Laboratory, Academic Medical Centre, University of Amsterdam, Amsterdam, The Netherlands.

Department of Medical Biochemistry, Amsterdam UMC, University of Amsterdam, Amsterdam, The Netherlands.

出版信息

Small GTPases. 2023 Dec;14(1):45-54. doi: 10.1080/21541248.2023.2242166.

Abstract

The RhoGEF Trio is a large multi-domain protein and an activator of the small GTPases Rac1, RhoG, and RhoA. Although Trio has been implicated in many cellular mechanisms like leukocyte transendothelial migration, cell-cell junction stability, lamellipodia formation, axon outgrowth, and muscle fusion, it remains unclear how Trio is activated. Using stable isotope labelling by amino acids in cell culture (SILAC)-based mass spectrometry analysis of endothelial cells, we identified two serine residues (S1785/S1786) located in between the two exchange domains of Trio that were highly phosphorylated upon short thrombin treatment. Using phosphomimetic Trio S1785D/S1786D double mutants, we did not find an increase in Rac1/RhoG activity, indicating that the phosphorylation events do not increase Trio exchange activity. However, we found that the Trio mutants localized more strongly at cell-cell junctions and prevented junction destabilization upon thrombin treatment, judged by junction linearity. Our data suggest that serine phosphorylation of Trio potentiates the localization of Trio to junctional regions, resulting in locally promoting the exchange for Rac1 at junction regions and increasing endothelial cell-cell junction stability upon permeability-inducing reagents such as thrombin.

摘要

RhoGEF Trio 是一种大型的多结构域蛋白,可激活小分子 GTP 酶 Rac1、RhoG 和 RhoA。尽管 Trio 已被牵涉到多种细胞机制中,如白细胞穿越内皮细胞迁移、细胞-细胞连接稳定性、片状伪足形成、轴突生长和肌肉融合,但 Trio 的激活机制仍不清楚。通过使用稳定同位素标记的氨基酸在细胞培养物中的应用(SILAC)-基于质谱分析内皮细胞,我们鉴定出位于 Trio 的两个交换结构域之间的两个丝氨酸残基(S1785/S1786),在短暂的凝血酶处理后高度磷酸化。使用磷酸化模拟 Trio S1785D/S1786D 双突变体,我们没有发现 Rac1/RhoG 活性增加,表明磷酸化事件不会增加 Trio 的交换活性。然而,我们发现 Trio 突变体在细胞-细胞连接处的定位更强,并在凝血酶处理时防止连接处不稳定,通过连接处的线性来判断。我们的数据表明,Trio 的丝氨酸磷酸化增强了 Trio 在连接区域的定位,从而在局部促进 Rac1 在连接区域的交换,并增加内皮细胞-细胞连接在通透性诱导剂(如凝血酶)作用下的稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c34/10399470/0c542b319507/KSGT_A_2242166_F0001_B.jpg

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