Department of Pharmacology, Yale University School of Medicine, New Haven, Connecticut, USA; Vascular Biology and Therapeutics Program, Yale University School of Medicine, New Haven, Connecticut, USA.
Department of Laboratory Medicine and Pathobiology, University of Toronto, Toronto, Ontario Canada.
J Biol Chem. 2020 Dec 25;295(52):18179-18188. doi: 10.1074/jbc.RA120.015680. Epub 2020 Oct 23.
Bone morphogenetic protein-9 (BMP-9) is a circulating cytokine that is known to play an essential role in the endothelial homeostasis and the binding of BMP-9 to the receptor activin-like kinase 1 (ALK-1) promotes endothelial cell quiescence. Previously, using an unbiased screen, we identified ALK-1 as a high-capacity receptor for low-density lipoprotein (LDL) in endothelial cells that mediates its transcytosis in a nondegradative manner. Here we examine the crosstalk between BMP-9 and LDL and how it influences their interactions with ALK-1. Treatment of endothelial cells with BMP-9 triggers the extensive endocytosis of ALK-1, and it is mediated by caveolin-1 (CAV-1) and dynamin-2 (DNM2) but not clathrin heavy chain. Knockdown of CAV-1 reduces BMP-9-mediated internalization of ALK-1, BMP-9-dependent signaling and gene expression. Similarly, treatment of endothelial cells with LDL reduces BMP-9-induced SMAD1/5 phosphorylation and gene expression and silencing of CAV-1 and DNM2 diminishes LDL-mediated ALK-1 internalization. Interestingly, BMP-9-mediated ALK-1 internalization strongly re-duces LDL transcytosis to levels seen with ALK-1 deficiency. Thus, BMP-9 levels can control cell surface levels of ALK-1, via CAV-1, to regulate both BMP-9 signaling and LDL transcytosis.
骨形态发生蛋白 9(BMP-9)是一种循环细胞因子,已知其在血管内皮细胞的稳态中发挥重要作用,BMP-9 与受体激活素样激酶 1(ALK-1)结合可促进内皮细胞静止。先前,我们使用无偏筛选方法鉴定出 ALK-1 是内皮细胞中 LDL 的高容量受体,它以非降解的方式介导 LDL 的转胞吞作用。在这里,我们研究了 BMP-9 和 LDL 之间的串扰以及它如何影响它们与 ALK-1 的相互作用。用 BMP-9 处理内皮细胞会触发 ALK-1 的广泛内吞作用,该作用由小窝蛋白-1(CAV-1)和动力蛋白-2(DNM2)介导,但不依赖于网格蛋白重链。CAV-1 的敲低会减少 BMP-9 介导的 ALK-1 内化、BMP-9 依赖性信号转导和基因表达。同样,用 LDL 处理内皮细胞会降低 BMP-9 诱导的 SMAD1/5 磷酸化和基因表达,沉默 CAV-1 和 DNM2 会减少 LDL 介导的 ALK-1 内化。有趣的是,BMP-9 介导的 ALK-1 内化强烈降低 LDL 转胞吞作用,使其水平与 ALK-1 缺陷时相似。因此,BMP-9 水平可以通过 CAV-1 控制细胞表面 ALK-1 的水平,从而调节 BMP-9 信号转导和 LDL 转胞吞作用。