Pal Sagnik, Su Yangyang, Nwadozi Emmanuel, Claesson-Welsh Lena, Richards Mark
Department of Immunology, Genetics and Pathology, Beijer and Science for Life Laboratories, Uppsala University, Uppsala, Sweden.
Angiogenesis. 2024 Dec 12;28(1):7. doi: 10.1007/s10456-024-09963-3.
Neuropilin-1 (NRP1) regulates endothelial cell (EC) biology through modulation of vascular endothelial growth factor receptor 2 (VEGFR2) signalling by presenting VEGFA to VEGFR2. How NRP1 impacts VEGFA-mediated vascular hyperpermeability has however remained unresolved, described as exerting either a positive or a passive function. Using EC-specific Nrp1 knock-out mice, we discover that EC-expressed NRP1 exerts an organotypic role. In the ear skin, VEGFA/VEGFR2-mediated vascular leakage was increased following loss of EC NRP1, implicating NRP1 in negative regulation of VEGFR2 signalling. In contrast, in the back skin and trachea, loss of EC NRP1 decreased vascular leakage. In accordance, phosphorylation of vascular endothelial (VE)-cadherin was increased in the ear skin but suppressed in the back skin of Nrp1 iECKO mice. NRP1 expressed on perivascular cells has been shown to impact VEGF-mediated VEGFR2 signalling. Importantly, expression of NRP1 on perivascular cells was more abundant in the ear skin than in the back skin. Global loss of NRP1 resulted in suppressed VEGFA-induced vascular leakage in the ear skin, implicating perivascular NRP1 as a juxtacrine co-receptor of VEGFA in this compartment. Altogether, we demonstrate that perivascular NRP1 is an active participant in EC VEGFA/VEGFR2 signalling and acts as an organotypic modifier of EC biology.
神经纤毛蛋白-1(NRP1)通过将血管内皮生长因子A(VEGFA)呈递给血管内皮生长因子受体2(VEGFR2)来调节血管内皮生长因子受体2(VEGFR2)信号传导,从而调控内皮细胞(EC)生物学功能。然而,NRP1如何影响VEGFA介导的血管通透性仍未明确,其作用被描述为具有正向或被动功能。利用内皮细胞特异性Nrp1基因敲除小鼠,我们发现内皮细胞表达的NRP1发挥着器官特异性作用。在耳部皮肤中,内皮细胞NRP1缺失后,VEGFA/VEGFR2介导的血管渗漏增加,这表明NRP1对VEGFR2信号传导具有负向调节作用。相反,在背部皮肤和气管中,内皮细胞NRP1缺失会减少血管渗漏。相应地,在Nrp1内皮细胞特异性基因敲除小鼠的耳部皮肤中,血管内皮(VE)-钙黏蛋白的磷酸化增加,而在背部皮肤中则受到抑制。已表明血管周围细胞上表达的NRP1会影响VEGF介导的VEGFR2信号传导。重要的是,血管周围细胞上NRP1的表达在耳部皮肤中比在背部皮肤中更丰富。NRP1的整体缺失导致耳部皮肤中VEGFA诱导的血管渗漏受到抑制,这表明在该区域血管周围的NRP1是VEGFA的旁分泌共受体。总之,我们证明血管周围的NRP1是内皮细胞VEGFA/VEGFR2信号传导的积极参与者,并作为内皮细胞生物学的器官特异性调节因子发挥作用。