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Recombinant Analogs of Sea Anemone Kunitz-Type Peptides Influence P2X7 Receptor Activity in Neuro-2a Cells.

Authors :
Pislyagin EA
Menchinskaya ES
Gladkikh IN
Kvetkina AN
Sintsova OV
Popkova DV
Kozlovskiy SA
Gorpenchenko TY
Likhatskaya GN
Kaluzhskiy LA
Ivanov AS
Andreev YA
Kozlov SA
Dmitrenok PS
Aminin DL
Leychenko EV
Source :
Marine drugs [Mar Drugs] 2023 Mar 20; Vol. 21 (3). Date of Electronic Publication: 2023 Mar 20.
Publication Year :
2023

Abstract

Purinergic P2X7 receptors (P2X7) have now been proven to play an important role and represent an important therapeutic target in many pathological conditions including neurodegeneration. Here, we investigated the impact of peptides on purinergic signaling in Neuro-2a cells through the P2X7 subtype in in vitro models. We have found that a number of recombinant peptides, analogs of sea anemone Kunitz-type peptides, are able to influence the action of high concentrations of ATP and thereby reduce the toxic effects of ATP. The influx of calcium, as well as the fluorescent dye YO-PRO-1, was significantly suppressed by the studied peptides. Immunofluorescence experiments confirmed that the peptides reduce the P2X7 expression level in neuronal Neuro-2a cells. Two selected active peptides, HCRG1 and HCGS1.10, were found to specifically interact with the extracellular domain of P2X7 and formed stable complexes with the receptor in surface plasmon resonance experiments. The molecular docking approach allowed us to establish the putative binding sites of the most active HCRG1 peptide on the extracellular domain of the P2X7 homotrimer and propose a mechanism for regulating its function. Thus, our work demonstrates the ability of the Kunitz-type peptides to prevent neuronal death by affecting signaling through the P2X7 receptor.

Details

Language :
English
ISSN :
1660-3397
Volume :
21
Issue :
3
Database :
MEDLINE
Journal :
Marine drugs
Publication Type :
Academic Journal
Accession number :
36976241
Full Text :
https://doi.org/10.3390/md21030192