Department of Ophthalmology & Visual Sciences, University of Illinois at Chicago, Chicago, IL 60612, USA.
Department of Physiology & Biophysics, University of Illinois at Chicago, Chicago, IL 60612, USA.
Int J Mol Sci. 2023 Mar 29;24(7):6402. doi: 10.3390/ijms24076402.
The purpose of this study was to identify genes that mediate VEGF-induced permeability. We performed RNA-Seq analysis on primary human retinal endothelial cells (HRECs) cultured in normal (5 mM) and high glucose (30 mM) conditions that were treated with vehicle, VEGF, or VEGF then anti-VEGF. We filtered our RNA-Seq dataset to identify genes with the following four characteristics: (1) regulated by VEGF, (2) VEGF regulation reversed by anti-VEGF, (3) regulated by VEGF in both normal and high glucose conditions, and (4) known contribution to vascular homeostasis. Of the resultant 18 genes, members of the Notch signaling pathway and (Ang2) were selected for further study. Permeability assays revealed that while the Notch pathway was dispensable for relaxing the barrier, it contributed to maintaining an open barrier. In contrast, Ang2 limited the extent of barrier relaxation in response to VEGF. These findings indicate that VEGF engages distinct sets of genes to induce and sustain barrier relaxation. Furthermore, VEGF induces expression of genes that limit the extent of barrier relaxation. Together, these observations begin to elucidate the elegance of VEGF-mediated transcriptional regulation of permeability.
本研究旨在鉴定介导 VEGF 诱导通透性的基因。我们对在正常(5mM)和高糖(30mM)条件下培养的原代人视网膜内皮细胞(HRECs)进行了 RNA-Seq 分析,这些细胞分别用载体、VEGF 或 VEGF 加抗 VEGF 处理。我们对 RNA-Seq 数据集进行了过滤,以鉴定具有以下四个特征的基因:(1)受 VEGF 调节,(2)抗 VEGF 逆转 VEGF 调节,(3)在正常和高糖条件下均受 VEGF 调节,(4)已知对血管稳态有贡献。在得到的 18 个基因中,选择了 Notch 信号通路和 Ang2 的成员进行进一步研究。通透性测定表明,虽然 Notch 通路对于放松屏障是可有可无的,但它有助于维持开放的屏障。相比之下,Ang2 限制了 VEGF 诱导的屏障松弛程度。这些发现表明,VEGF 利用不同的基因集来诱导和维持屏障松弛。此外,VEGF 诱导表达限制屏障松弛程度的基因。总之,这些观察结果开始阐明 VEGF 介导的通透性转录调节的精妙之处。