[HTML][HTML] RGS1 regulates myeloid cell accumulation in atherosclerosis and aortic aneurysm rupture through altered chemokine signalling

J Patel, E McNeill, G Douglas, AB Hale… - Nature …, 2015 - nature.com
J Patel, E McNeill, G Douglas, AB Hale, J De Bono, R Lee, AJ Iqbal, D Regan-Komito
Nature communications, 2015nature.com
Chemokine signalling drives monocyte recruitment in atherosclerosis and aortic aneurysms.
The mechanisms that lead to retention and accumulation of macrophages in the vascular
wall remain unclear. Regulator of G-Protein Signalling-1 (RGS1) deactivates G-protein
signalling, reducing the response to sustained chemokine stimulation. Here we show that
Rgs1 is upregulated in atherosclerotic plaque and aortic aneurysms. Rgs1 reduces
macrophage chemotaxis and desensitizes chemokine receptor signalling. In early …
Abstract
Chemokine signalling drives monocyte recruitment in atherosclerosis and aortic aneurysms. The mechanisms that lead to retention and accumulation of macrophages in the vascular wall remain unclear. Regulator of G-Protein Signalling-1 (RGS1) deactivates G-protein signalling, reducing the response to sustained chemokine stimulation. Here we show that Rgs1 is upregulated in atherosclerotic plaque and aortic aneurysms. Rgs1 reduces macrophage chemotaxis and desensitizes chemokine receptor signalling. In early atherosclerotic lesions, Rgs1 regulates macrophage accumulation and is required for the formation and rupture of Angiotensin II-induced aortic aneurysms, through effects on leukocyte retention. Collectively, these data reveal a role for Rgs1 in leukocyte trafficking and vascular inflammation and identify Rgs1, and inhibition of chemokine receptor signalling as potential therapeutic targets in vascular disease.
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