Department of Pharmacology, The University of Illinois College of Medicine, 835 S. Wolcott Avenue, Chicago, IL 60612, USA.
Advanced Imaging Center at Janelia Research Campus, 19700 Helix Drive, Ashburn, VA 20147, USA.
Cell Chem Biol. 2019 Aug 15;26(8):1081-1094.e6. doi: 10.1016/j.chembiol.2019.04.007. Epub 2019 May 23.
In the current model of endothelial barrier regulation, the tyrosine kinase SRC is purported to induce disassembly of endothelial adherens junctions (AJs) via phosphorylation of VE cadherin, and thereby increase junctional permeability. Here, using a chemical biology approach to temporally control SRC activation, we show that SRC exerts distinct time-variant effects on the endothelial barrier. We discovered that the immediate effect of SRC activation was to transiently enhance endothelial barrier function as the result of accumulation of VE cadherin at AJs and formation of morphologically distinct reticular AJs. Endothelial barrier enhancement via SRC required phosphorylation of VE cadherin at Y731. In contrast, prolonged SRC activation induced VE cadherin phosphorylation at Y685, resulting in increased endothelial permeability. Thus, time-variant SRC activation differentially phosphorylates VE cadherin and shapes AJs to fine-tune endothelial barrier function. Our work demonstrates important advantages of synthetic biology tools in dissecting complex signaling systems.
在目前的内皮屏障调节模型中,酪氨酸激酶 SRC 据称通过磷酸化 VE 钙黏蛋白诱导内皮细胞黏附连接(AJ)的解聚,从而增加连接的通透性。在这里,我们使用化学生物学方法来暂时控制 SRC 的激活,以显示 SRC 对内皮屏障产生不同的时变效应。我们发现,SRC 激活的即时效应是通过在 AJ 处 VE 钙黏蛋白的积累和形成形态上不同的网状 AJ,暂时增强内皮屏障功能。通过 SRC 增强内皮屏障需要 VE 钙黏蛋白在 Y731 处的磷酸化。相比之下,SRC 的长期激活导致 VE 钙黏蛋白在 Y685 处的磷酸化增加,从而导致内皮通透性增加。因此,时变的 SRC 激活使 VE 钙黏蛋白不同磷酸化,并塑造 AJ 以微调内皮屏障功能。我们的工作表明,合成生物学工具在剖析复杂信号系统方面具有重要优势。
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