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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.
Abstract:
Pseudomonas aeruginosa is a frequent cause of hospital-acquired wound infection and is difficult to treat because it forms biofilms and displays antibiotic resistance. Previous studies in mice demonstrated that mast cells (MCs) not only contribute to P. aeruginosa eradication but also promote wound healing via an unknown mechanism. We recently reported that host defense peptides (HDPs) induce human MC degranulation via Mas-related G protein-coupled receptor-X2 (MRGPRX2). Small molecule HDP mimetics have distinct advantages over HDPs because they are inexpensive to synthesize and display high stability, bioavailability, and low toxicity. Murepavadin is a lipidated HDP mimetic, (also known as POL7080), which displays antibacterial activity against a broad panel of multi-drug-resistant P. aeruginosa. We found that murepavadin induces Ca2+ mobilization, degranulation, chemokine IL-8 and CCL3 production in a human MC line (LAD2 cells) endogenously expressing MRGPRX2. Murepavadin also caused degranulation in RBL-2H3 cells expressing MRGPRX2 but this response was significantly reduced in cells expressing missense variants within the receptor's ligand binding (G165E) or G protein coupling (V282M) domains. Compound 48/80 induced β-arrestin recruitment and promoted receptor internalization, which resulted in substantial decrease in the subsequent responsiveness to the MRGPRX2 agonist. By contrast, murepavadin did not cause β-arrestin-mediated MRGPRX2 regulation. Murepavadin induced degranulation in mouse peritoneal MCs via MrgprB2 (ortholog of human MRGPRX2) and caused increased vascular permeability in wild-type mice but not in MrgprB2-/- mice. The data presented herein demonstrate that murepavadin activates human MCs via MRGPRX2 and murine MCs via MrgprB2 and that MRGPRX2 is resistant to β-arrestin-mediated receptor regulation. Thus, besides its direct activity against P. aeruginosa, murepavadin may contribute to bacterial clearance and promote wound healing by harnessing MC's immunomodulatory property via the activation of MRGPRX2.
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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