Murepavadin, a Small Molecule Host Defense Peptide Mimetic, Activates Mast Cells via MRGPRX2 and MrgprB2

Aetas Amponnawarat1,2, Chalatip Chompunud Na Ayudhya1,3, Hydar Ali1

  • 1Department of Basic and Translational Sciences, School of Dental Medicine, University of Pennsylvania, Philadelphia, PA, United States.

Insights

Murepavadin, a host defense peptide mimetic, activates human mast cells (MCs) via MRGPRX2 and mouse MCs via MrgprB2. This interaction enhances bacterial clearance and wound healing, bypassing beta-arrestin regulation.

Area of Science:

  • Immunology
  • Pharmacology
  • Microbiology

Background:

  • Pseudomonas aeruginosa infections are difficult to treat due to biofilm formation and antibiotic resistance.
  • Mast cells (MCs) play a role in P. aeruginosa eradication and wound healing.
  • Host defense peptides (HDPs) activate MCs via Mas-related G protein-coupled receptor-X2 (MRGPRX2).

Purpose of the Study:

  • To investigate the mechanism by which the HDP mimetic murepavadin activates mast cells.
  • To determine if murepavadin's activation of MRGPRX2 is subject to beta-arrestin-mediated regulation.
  • To explore murepavadin's potential role in combating P. aeruginosa infections and promoting wound healing.

Main Methods:

  • Utilized human LAD2 and RBL-2H3 cell lines expressing MRGPRX2 to assess murepavadin-induced mast cell degranulation and mediator release.
  • Investigated the role of specific MRGPRX2 domains and beta-arrestin recruitment in murepavadin's mechanism of action.
  • Employed wild-type and MrgprB2 knockout mice to evaluate murepavadin's in vivo effects on mast cell activation and vascular permeability.

Main Results:

  • Murepavadin induced calcium mobilization, degranulation, and chemokine release (IL-8, CCL3) in human mast cells expressing MRGPRX2.
  • Murepavadin activated mast cells via MrgprB2 in mice, leading to increased vascular permeability.
  • MRGPRX2 activation by murepavadin was resistant to beta-arrestin-mediated receptor regulation, unlike compound 48/80.

Conclusions:

  • Murepavadin activates human mast cells through MRGPRX2 and murine mast cells through MrgprB2.
  • The MRGPRX2 receptor is not regulated by beta-arrestin in response to murepavadin.
  • Murepavadin may enhance bacterial clearance and wound healing by leveraging mast cell activation via MRGPRX2, in addition to its direct antimicrobial effects.

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