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Design and synthesis of first environment-sensitive coumarin fluorescent agonists for MrgX2.

Abstract
Mas related G-protein-coupled receptor member X2 (MrgX2) has been identified as the crucial receptor in drug induced pseudo-allergic reactions and allergic diseases. In this research, the first type of fluorescent agonists (ZX1, ZX2 and ZX3) for MrgX2 were developed by conjugating environment-sensitive fluorophore coumarin to MrgX2 selective agonists (R)-ZINC-3573. Their environment-sensitive property was confirmed by the dramatically increase of fluorescent intensity after binding to the hydrophobic ligand binding domain MrgX2, which help to overcome the high background signal. Based on these characteristics, they can be used for selective visualization of MrgX2 in living cells even with their own background interference. Among these fluorescent agonists, compound ZX2 possessed splendid spectroscopic properties, outstanding pharmacological activities (EC50 = 0.93 μM, KD = 1.97 μM). And a competitive binding assay was established with ZX2 to analysis the binding affinity of MrgX2 agonists, which shown high coherence with the results of cell membrane chromatography. To our knowledge, these probes are the first fluorescent ligands of MrgX2 with agonistic activity and environment-sensitive property, which is expected to use for the development of MrgX2 molecular pharmacology and serve as a convenient high-throughput screening tool for the drug candidates targeting MrgX2.
AuthorsYajing Hou, Cheng Wang, Jiayu Lu, Min Jia, Yuexin Lv, Xin Jia, Qiumei Zhu, Min Si, Huaizhen He, Langchong He
JournalInternational journal of biological macromolecules (Int J Biol Macromol) Vol. 203 Pg. 481-491 (Apr 01 2022) ISSN: 1879-0003 [Electronic] Netherlands
PMID35051504 (Publication Type: Journal Article)
CopyrightCopyright © 2022 Elsevier B.V. All rights reserved.
Chemical References
  • Coumarins
  • Fluorescent Dyes
  • Ligands
Topics
  • Cell Degranulation
  • Coumarins (metabolism)
  • Fluorescent Dyes (metabolism)
  • Ligands
  • Mast Cells (metabolism)

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