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Collagen Metabolism Is a Novel Target of the Neuropeptide α-Melanocyte-stimulating Hormone

Bohm M, Raghunath M, Sunderkotter C +7 more2004Journal of Biological ChemistryJournal Article
10.1074/jbc.M312549200PubMedFree full text
DermatologicalEndocrine (ADH/ACTH/MSH)

Abstract

Suppression of collagen synthesis is a major therapeutic goal in the treatment of fibrotic disorders. We show here that alpha-melanocyte-stimulating hormone (alpha-MSH), a neuropeptide well known for its pigment-inducing capacity, modulates collagen synthesis and deposition. Alpha-MSH in vitro suppresses the synthesis of collagen types I, III, and V and down-regulates the secretion of procollagen type I C-terminal peptide (PICP) in human dermal fibroblasts treated with the fibrogenic cytokine transforming growth factor-beta1 (TGF-beta1). Alpha-MSH did not interfere with TGF-beta1 signaling, because TGF-beta1-induced expression of collagen mRNA was not affected, implying a posttranscriptional mechanism. Human dermal fibroblasts in vitro express a high affinity binding site for MSH, which was identified by reverse transcription PCR and immunofluorescence analysis as the melanocortin-1 receptor (MC-1R). Immunohistochemical studies on normal adult human skin confirmed MC-1R expression in distinct dermal fibroblastic cells. The MC-1R on fibroblasts appears to be functionally relevant because alpha-MSH increased the amount of intracellular cAMP, and coincubation with a synthetic peptide corresponding to the human Agouti signaling protein abrogated the inhibition of TGF-beta1-induced PICP secretion by alpha-MSH. To assess the in vivo relevance of these findings, a mouse model was used in which dermal fibrosis was induced by repetitive intracutaneous injections with TGF-beta1. The inductive activity of TGF-beta1 on collagen deposition and the number of dermal cells immunoreactive for vimentin and alpha-smooth muscle actin was significantly suppressed by injection of alpha-MSH. Melanocortins such as alpha-MSH may therefore represent a novel class of modulators with potential usefulness for the treatment of fibrotic disorders.

Key Biomarkers

Alpha-melanocyte-stimulating hormone (alpha-MSH)collagen types I, III, and Vintracellular cAMPmelanocortin-1 receptor (MC-1R)procollagen type I C-terminal peptide (PICP)Transforming growth factor-beta1 (TGF-β1)

Symptom Clusters

Dermal fibrosisFibrotic disorders

Cited By (7)

  • α-Melanocyte-Stimulating Hormone and Related Tripeptides: Biochemistry, Antiinflammatory and Protective Effects in Vitro and in Vivo, and Future Perspectives for the Treatment of Immune-Mediated Inflammatory DiseasesEndocrine Reviews
  • Detection of Functionally Active Melanocortin Receptors and Evidence for an Immunoregulatory Activity of α-Melanocyte-Stimulating Hormone in Human Dermal Papilla CellsEndocrinology · 2005
  • PRODUCTION AND EFFECTS OF α-MELANOCYTE-STIMULATING HORMONE DURING ACUTE LUNG INJURYShock · 2007
  • PDGF Promotes Dermal Fibroblast Activation via a Novel Mechanism Mediated by Signaling Through MCHR1Frontiers in Immunology · 2021
  • Electroporative α-MSH gene transfer attenuates thioacetamide-induced murine hepatic fibrosis by MMP and TIMP modulationGene Therapy · 2006
  • Pro-resolving and anti-arthritic properties of the MC1 selective agonist PL8177Frontiers in Immunology · 2022

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References (3)

  • Alpha melanocyte stimulating hormone inhibits immunostimulatory and inflammatory actions of interleukin 1.The Journal of Immunology · 1986
  • Alpha-melanocyte-stimulating hormone inhibits the nuclear transcription factor NF-kappa B activation induced by various inflammatory agentsThe Journal of Immunology · 1998
  • Effect of Alpha- and Beta-Melanocyte Stimulating Hormones on the Skin Colour of ManNature · 1961
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