Department of Pharmacology and the Center for Lung and Vascular Biology, The University of Illinois College of Medicine, Chicago, IL.
Department of Chemical and Biomolecular Engineering, University of Illinois College of Engineering at Urbana-Champaign, Urbana, IL.
J Cell Biol. 2019 May 6;218(5):1725-1742. doi: 10.1083/jcb.201807210. Epub 2019 Apr 4.
Vascular endothelial (VE) protein tyrosine phosphatase (PTP) is an endothelial-specific phosphatase that stabilizes VE-cadherin junctions. Although studies have focused on the role of VE-PTP in dephosphorylating VE-cadherin in the activated endothelium, little is known of VE-PTP's role in the quiescent endothelial monolayer. Here, we used the photoconvertible fluorescent protein VE-cadherin-Dendra2 to monitor VE-cadherin dynamics at adherens junctions (AJs) in confluent endothelial monolayers. We discovered that VE-PTP stabilizes VE-cadherin junctions by reducing the rate of VE-cadherin internalization independently of its phosphatase activity. VE-PTP serves as an adaptor protein that through binding and inhibiting the RhoGEF GEF-H1 modulates RhoA activity and tension across VE-cadherin junctions. Overexpression of the VE-PTP cytosolic domain mutant interacting with GEF-H1 in VE-PTP-depleted endothelial cells reduced GEF-H1 activity and restored VE-cadherin dynamics at AJs. Thus, VE-PTP stabilizes VE-cadherin junctions and restricts endothelial permeability by inhibiting GEF-H1, thereby limiting RhoA signaling at AJs and reducing the VE-cadherin internalization rate.
血管内皮(VE)蛋白酪氨酸磷酸酶(PTP)是一种内皮特异性磷酸酶,可稳定 VE-钙黏蛋白连接。尽管研究集中在 VE-PTP 在去磷酸化激活内皮细胞中的 VE-cadherin 上,但对于 VE-PTP 在静止的内皮单层中的作用知之甚少。在这里,我们使用光转化荧光蛋白 VE-cadherin-Dendra2 监测在血管内皮细胞单层中紧密连接(AJs)处的 VE-cadherin 动力学。我们发现 VE-PTP 通过独立于其磷酸酶活性降低 VE-cadherin 内化的速率来稳定 VE-cadherin 连接。VE-PTP 作为一种衔接蛋白,通过与 RhoGEF GEF-H1 结合并抑制其活性,调节 RhoA 活性和 VE-cadherin 连接的张力。在 VE-PTP 耗尽的内皮细胞中过表达与 GEF-H1 相互作用的 VE-PTP 胞质结构域突变体,降低了 GEF-H1 的活性,并恢复了 AJ 处的 VE-cadherin 动力学。因此,VE-PTP 通过抑制 GEF-H1 稳定 VE-cadherin 连接,限制内皮通透性,从而限制 AJ 处的 RhoA 信号转导并降低 VE-cadherin 的内化速率。