HDL-bound sphingosine 1-phosphate acts as a biased agonist for the endothelial cell receptor S1P1 to limit vascular inflammation
Sylvain Galvani,Marie Sanson,Victoria A. Blaho,Steven L. Swendeman,Hideru Obinata,Heather Conger,Björn Dahlbäck,Mari Kono,Richard L. Proia,Jonathan D. Smith,Timothy Hla +10 more
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TL;DR: The ability of ApoM+HDL to act as a biased agonist on S1P1 inhibits vascular inflammation, which may partially explain the cardiovascular protective functions of HDL.
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Abstract: The sphingosine 1-phosphate receptor 1 (S1P1) is abundant in endothelial cells, where it regulates vascular development and microvascular barrier function. In investigating the role of endothelial cell S1P1 in adult mice, we found that the endothelial S1P1 signal was enhanced in regions of the arterial vasculature experiencing inflammation. The abundance of proinflammatory adhesion proteins, such as ICAM-1, was enhanced in mice with endothelial cell-specific deletion of S1pr1 and suppressed in mice with endothelial cell-specific overexpression of S1pr1, suggesting a protective function of S1P1 in vascular disease. The chaperones ApoM(+)HDL (HDL) or albumin bind to sphingosine 1-phosphate (S1P) in the circulation; therefore, we tested the effects of S1P bound to each chaperone on S1P1 signaling in cultured human umbilical vein endothelial cells (HUVECs). Exposure of HUVECs to ApoM(+)HDL-S1P, but not to albumin-S1P, promoted the formation of a cell surface S1P1-β-arrestin 2 complex and attenuated the ability of the proinflammatory cytokine TNFα to activate NF-κB and increase ICAM-1 abundance. Although S1P bound to either chaperone induced MAPK activation, albumin-S1P triggered greater Gi activation and receptor endocytosis. Endothelial cell-specific deletion of S1pr1 in the hypercholesterolemic Apoe(-/-) mouse model of atherosclerosis enhanced atherosclerotic lesion formation in the descending aorta. We propose that the ability of ApoM(+)HDL to act as a biased agonist on S1P1 inhibits vascular inflammation, which may partially explain the cardiovascular protective functions of HDL.
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References
An abundant transcript induced in differentiating human endothelial cells encodes a polypeptide with structural similarities to G-protein-coupled receptors.
Timothy Hla,Thomas Maciag +1 more
TL;DR: The characterization of human edg-1 as a highly inducible and abundant endothelial cell GPR suggest that it may be involved in the processes that regulate the differentiation of endothelial cells.
569
An update on the biology of sphingosine 1-phosphate receptors.
Victoria A. Blaho,Timothy Hla +1 more
TL;DR: This review will focus on the most recent advances in S1PRs, as they become attractive therapeutic targets in several diseases, such as chronic inflammatory pathologies, autoimmunity, and cancer.
477
Inducible gene targeting in the neonatal vasculature and analysis of retinal angiogenesis in mice
TL;DR: A detailed protocol for tamoxifen-inducible gene deletion in neonatal mice as well as for retina dissection, whole-mount immunostaining and the quantitation of EC sprouting and proliferation is provided.
434
Flow-Regulated Endothelial S1P Receptor-1 Signaling Sustains Vascular Development
Bongnam Jung,Hideru Obinata,Sylvain Galvani,Karen Mendelson,Bi-Sen Ding,Athanasia Skoura,Bernd Kinzel,Volker Brinkmann,Shahin Rafii,Todd Evans,Timothy Hla +10 more
TL;DR: It is demonstrated that blood flow and circulating S1P activate endothelial S 1P1 to stabilize blood vessels in development and homeostasis and responds to laminar shear stress to transduce flow-mediated signaling.
317
Identification of β-Arrestin2 as a G Protein-Coupled Receptor-Stimulated Regulator of NF-κB Pathways
TL;DR: It is shown that beta-arrestin2 directly interacts with IkappaBalpha (inhibitor of NF-kappaB, the key molecule in innate and adaptive immunity) and thus prevents the phosphorylation and degradation of Ikappa Balpha, which may present a novel mechanism for regulation of the immune system by the sympathetic nervous system.
302