Melanocortin 1 Receptor Deficiency Promotes Atherosclerosis in Apolipoprotein E-/- Mice
ARTERIOSCLEROSIS THROMBOSIS AND VASCULAR BIOLOGY
Authors: Rinne, Petteri; Kadiri, James J.; Velasco-Delgado, Mauricio; Nuutinen, Salla; Viitala, Miro; Hollmen, Maija; Rami, Martina; Savontaus, Eriika; Steffens, Sabine
Abstract
Objective-The MC1-R (melanocortin 1 receptor) is expressed by monocytes and macrophages where it mediates anti-inflammatory actions. MC1-R also protects against macrophage foam cell formation primarily by promoting cholesterol efflux through the ABCA1 (ATP-binding cassette transporter subfamily A member 1) and ABCG1 (ATP-binding cassette transporter subfamily G member 1). In this study, we aimed to investigate whether global deficiency in MC1-R signaling affects the development of atherosclerosis. Approach and Results-Apoe(-/-) (apolipoprotein E deficient) mice were crossed with recessive yellow (Mc1r(e/e)) mice carrying dysfunctional MC1-R and fed a high-fat diet to induce atherosclerosis. Apoe(-/-) Mc1r(e/e) mice developed significantly larger atherosclerotic lesions in the aortic sinus and in the whole aorta compared with Apoe(-/-) controls. In terms of plaque composition, MC1-R deficiency was associated with less collagen and smooth muscle cells and increased necrotic core, indicative of more vulnerable lesions. These changes were accompanied by reduced Abca1 and Abcg1 expression in the aorta. Furthermore, Apoe(-/-) Mc1r(e/e) mice showed a defect in bile acid metabolism that aggravated high-fat diet-induced hypercholesterolemia and hepatic lipid accumulation. Flow cytometric analysis of leukocyte profile revealed that dysfunctional MC1-R enhanced arterial accumulation of classical Ly6C(high) monocytes and macrophages, effects that were evident in mice fed a normal chow diet but not under high-fat diet conditions. In support of enhanced arterial recruitment of Ly6C(high) monocytes, these cells had increased expression of L-selectin and P-selectin glycoprotein ligand 1. Conclusions-The present study highlights the importance of MC1-R in the development of atherosclerosis. Deficiency in MC1-R signaling exacerbates atherosclerosis by disturbing cholesterol handling and by increasing arterial monocyte accumulation.
MC1R variants affect the expression of melanocortin and melanogenic genes and the association between melanocortin genes and coloration
MOLECULAR ECOLOGY
Authors: San-Jose, Luis M.; Ducrest, Anne-Lyse; Ducret, Valerie; Simon, Celine; Richter, Hannes; Wakamatsu, Kazumasa; Roulin, Alexandre
Abstract
The melanocortin-1 receptor (MC1R) gene influences coloration by altering the expression of genes acting downstream in the melanin synthesis. MC1R belongs to the melanocortin system, a genetic network coding for the ligands that regulate MC1R and other melanocortin receptors controlling different physiological and behavioural traits. The impact of MC1R variants on these regulatory melanocortin genes was never considered, even though MC1R mutations could alter the influence of these genes on coloration (e. g. by decreasing MC1R response to melanocortin ligands). Using barn owl growing feathers, we investigated the differences between MC1R genotypes in the (co)-expression of six melanocortin and nine melanogenic-related genes and in the association between melanocortin gene expression and phenotype (feather pheomelanin content). Compared to the MC1R rufous allele, responsible for reddish coloration, the white allele was not only associated with an expected lower expression of melanogenic- related genes (TYR, TYRP1, OCA2, SLC45A2, KIT, DCT) but also with a lower MC1R expression and a higher expression of ASIP, the MC1R antagonist. More importantly, the expression of PCSK2, responsible for the maturation of the MC1R agonist, a-melanocyte-stimulating hormone, was positively related to pheomelanin content in MC1R white homozygotes but not in individuals carrying the MC1R rufous allele. These findings indicate that MC1R mutations not only alter the expression of melanogenic- related genes but also the association between coloration and the expression of melanocortin genes upstream of MC1R. This suggests that MC1R mutations can modulate the regulation of coloration by the pleiotropic melanocortin genes, potentially decoupling the often-observed associations between coloration and other phenotypes.