Department of Biology, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina 27599, USA.
Lineberger Comprehensive Cancer Center, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina 27599, USA.
Nat Commun. 2017 Jun 7;8:15699. doi: 10.1038/ncomms15699.
Blood vessel expansion is driven by sprouting angiogenesis of endothelial cells, and is essential for development, wound healing and disease. Membrane-localized vascular endothelial growth factor receptor-1 (mVEGFR1) is an endothelial cell-intrinsic decoy receptor that negatively modulates blood vessel morphogenesis. Here we show that dynamic regulation of mVEGFR1 stability and turnover in blood vessels impacts angiogenesis. mVEGFR1 is highly stable and constitutively internalizes from the plasma membrane. Post-translational palmitoylation of mVEGFR1 is a binary stabilization switch, and ligand engagement leads to depalmitoylation and lysosomal degradation. Trafficking of palmitoylation enzymes via Rab27a regulates mVEGFR1 stability, as reduced levels of Rab27a impaired palmitoylation of mVEGFR1, decreased its stability, and elevated blood vessel sprouting and in vivo angiogenesis. These findings identify a regulatory axis affecting blood vessel morphogenesis that highlights exquisite post-translational regulation of mVEGFR1 in its role as a molecular rheostat.
血管扩张是由内皮细胞的出芽血管生成驱动的,对于发育、伤口愈合和疾病都是必不可少的。膜定位的血管内皮生长因子受体-1(mVEGFR1)是一种内皮细胞内在的诱饵受体,可负向调节血管形态发生。本文表明,血管中 mVEGFR1 稳定性和周转率的动态调节会影响血管生成。mVEGFR1 高度稳定且持续从质膜内化。mVEGFR1 的翻译后棕榈酰化是一个二元稳定开关,配体结合导致去棕榈酰化和溶酶体降解。通过 Rab27a 运输棕榈酰化酶调节 mVEGFR1 的稳定性,因为 Rab27a 水平降低会损害 mVEGFR1 的棕榈酰化,降低其稳定性,并增加血管出芽和体内血管生成。这些发现确定了一个影响血管形态发生的调节轴,突出了 mVEGFR1 在作为分子变阻器的作用中对其进行精确的翻译后调节。