Cargando…

A Pore Forming Toxin-like Protein Derived from Chinese Red Belly Toad Bombina maxima Triggers the Pyroptosis of Hippomal Neural Cells and Impairs the Cognitive Ability of Mice

Toxin-like proteins and peptides of skin secretions from amphibians play important physiological and pathological roles in amphibians. βγ-CAT is a Chinese red-belly toad-derived pore-forming toxin-like protein complex that consists of aerolysin domain, crystalline domain, and trefoil factor domain a...

Descripción completa

Detalles Bibliográficos
Autores principales: Ye, Qingqing, Wang, Qiquan, Lee, Wenhui, Xiang, Yang, Yuan, Jixue, Zhang, Yun, Guo, Xiaolong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10054870/
https://www.ncbi.nlm.nih.gov/pubmed/36977082
http://dx.doi.org/10.3390/toxins15030191
_version_ 1785015775789056000
author Ye, Qingqing
Wang, Qiquan
Lee, Wenhui
Xiang, Yang
Yuan, Jixue
Zhang, Yun
Guo, Xiaolong
author_facet Ye, Qingqing
Wang, Qiquan
Lee, Wenhui
Xiang, Yang
Yuan, Jixue
Zhang, Yun
Guo, Xiaolong
author_sort Ye, Qingqing
collection PubMed
description Toxin-like proteins and peptides of skin secretions from amphibians play important physiological and pathological roles in amphibians. βγ-CAT is a Chinese red-belly toad-derived pore-forming toxin-like protein complex that consists of aerolysin domain, crystalline domain, and trefoil factor domain and induces various toxic effects via its membrane perforation process, including membrane binding, oligomerization, and endocytosis. Here, we observed the death of mouse hippocampal neuronal cells induced by βγ-CAT at a concentration of 5 nM. Subsequent studies showed that the death of hippocampal neuronal cells was accompanied by the activation of Gasdermin E and caspase-1, suggesting that βγ-CAT induces the pyroptosis of hippocampal neuronal cells. Further molecular mechanism studies revealed that the pyroptosis induced by βγ-CAT is dependent on the oligomerization and endocytosis of βγ-CAT. It is well known that the damage of hippocampal neuronal cells leads to the cognitive attenuation of animals. The impaired cognitive ability of mice was observed after intraperitoneal injection with 10 μg/kg βγ-CAT in a water maze assay. Taken together, these findings reveal a previously unknown toxicological function of a vertebrate-derived pore-forming toxin-like protein in the nerve system, which triggers the pyroptosis of hippocampal neuronal cells, ultimately leading to hippocampal cognitive attenuation.
format Online
Article
Text
id pubmed-10054870
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-100548702023-03-30 A Pore Forming Toxin-like Protein Derived from Chinese Red Belly Toad Bombina maxima Triggers the Pyroptosis of Hippomal Neural Cells and Impairs the Cognitive Ability of Mice Ye, Qingqing Wang, Qiquan Lee, Wenhui Xiang, Yang Yuan, Jixue Zhang, Yun Guo, Xiaolong Toxins (Basel) Article Toxin-like proteins and peptides of skin secretions from amphibians play important physiological and pathological roles in amphibians. βγ-CAT is a Chinese red-belly toad-derived pore-forming toxin-like protein complex that consists of aerolysin domain, crystalline domain, and trefoil factor domain and induces various toxic effects via its membrane perforation process, including membrane binding, oligomerization, and endocytosis. Here, we observed the death of mouse hippocampal neuronal cells induced by βγ-CAT at a concentration of 5 nM. Subsequent studies showed that the death of hippocampal neuronal cells was accompanied by the activation of Gasdermin E and caspase-1, suggesting that βγ-CAT induces the pyroptosis of hippocampal neuronal cells. Further molecular mechanism studies revealed that the pyroptosis induced by βγ-CAT is dependent on the oligomerization and endocytosis of βγ-CAT. It is well known that the damage of hippocampal neuronal cells leads to the cognitive attenuation of animals. The impaired cognitive ability of mice was observed after intraperitoneal injection with 10 μg/kg βγ-CAT in a water maze assay. Taken together, these findings reveal a previously unknown toxicological function of a vertebrate-derived pore-forming toxin-like protein in the nerve system, which triggers the pyroptosis of hippocampal neuronal cells, ultimately leading to hippocampal cognitive attenuation. MDPI 2023-03-03 /pmc/articles/PMC10054870/ /pubmed/36977082 http://dx.doi.org/10.3390/toxins15030191 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ye, Qingqing
Wang, Qiquan
Lee, Wenhui
Xiang, Yang
Yuan, Jixue
Zhang, Yun
Guo, Xiaolong
A Pore Forming Toxin-like Protein Derived from Chinese Red Belly Toad Bombina maxima Triggers the Pyroptosis of Hippomal Neural Cells and Impairs the Cognitive Ability of Mice
title A Pore Forming Toxin-like Protein Derived from Chinese Red Belly Toad Bombina maxima Triggers the Pyroptosis of Hippomal Neural Cells and Impairs the Cognitive Ability of Mice
title_full A Pore Forming Toxin-like Protein Derived from Chinese Red Belly Toad Bombina maxima Triggers the Pyroptosis of Hippomal Neural Cells and Impairs the Cognitive Ability of Mice
title_fullStr A Pore Forming Toxin-like Protein Derived from Chinese Red Belly Toad Bombina maxima Triggers the Pyroptosis of Hippomal Neural Cells and Impairs the Cognitive Ability of Mice
title_full_unstemmed A Pore Forming Toxin-like Protein Derived from Chinese Red Belly Toad Bombina maxima Triggers the Pyroptosis of Hippomal Neural Cells and Impairs the Cognitive Ability of Mice
title_short A Pore Forming Toxin-like Protein Derived from Chinese Red Belly Toad Bombina maxima Triggers the Pyroptosis of Hippomal Neural Cells and Impairs the Cognitive Ability of Mice
title_sort pore forming toxin-like protein derived from chinese red belly toad bombina maxima triggers the pyroptosis of hippomal neural cells and impairs the cognitive ability of mice
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10054870/
https://www.ncbi.nlm.nih.gov/pubmed/36977082
http://dx.doi.org/10.3390/toxins15030191
work_keys_str_mv AT yeqingqing aporeformingtoxinlikeproteinderivedfromchineseredbellytoadbombinamaximatriggersthepyroptosisofhippomalneuralcellsandimpairsthecognitiveabilityofmice
AT wangqiquan aporeformingtoxinlikeproteinderivedfromchineseredbellytoadbombinamaximatriggersthepyroptosisofhippomalneuralcellsandimpairsthecognitiveabilityofmice
AT leewenhui aporeformingtoxinlikeproteinderivedfromchineseredbellytoadbombinamaximatriggersthepyroptosisofhippomalneuralcellsandimpairsthecognitiveabilityofmice
AT xiangyang aporeformingtoxinlikeproteinderivedfromchineseredbellytoadbombinamaximatriggersthepyroptosisofhippomalneuralcellsandimpairsthecognitiveabilityofmice
AT yuanjixue aporeformingtoxinlikeproteinderivedfromchineseredbellytoadbombinamaximatriggersthepyroptosisofhippomalneuralcellsandimpairsthecognitiveabilityofmice
AT zhangyun aporeformingtoxinlikeproteinderivedfromchineseredbellytoadbombinamaximatriggersthepyroptosisofhippomalneuralcellsandimpairsthecognitiveabilityofmice
AT guoxiaolong aporeformingtoxinlikeproteinderivedfromchineseredbellytoadbombinamaximatriggersthepyroptosisofhippomalneuralcellsandimpairsthecognitiveabilityofmice
AT yeqingqing poreformingtoxinlikeproteinderivedfromchineseredbellytoadbombinamaximatriggersthepyroptosisofhippomalneuralcellsandimpairsthecognitiveabilityofmice
AT wangqiquan poreformingtoxinlikeproteinderivedfromchineseredbellytoadbombinamaximatriggersthepyroptosisofhippomalneuralcellsandimpairsthecognitiveabilityofmice
AT leewenhui poreformingtoxinlikeproteinderivedfromchineseredbellytoadbombinamaximatriggersthepyroptosisofhippomalneuralcellsandimpairsthecognitiveabilityofmice
AT xiangyang poreformingtoxinlikeproteinderivedfromchineseredbellytoadbombinamaximatriggersthepyroptosisofhippomalneuralcellsandimpairsthecognitiveabilityofmice
AT yuanjixue poreformingtoxinlikeproteinderivedfromchineseredbellytoadbombinamaximatriggersthepyroptosisofhippomalneuralcellsandimpairsthecognitiveabilityofmice
AT zhangyun poreformingtoxinlikeproteinderivedfromchineseredbellytoadbombinamaximatriggersthepyroptosisofhippomalneuralcellsandimpairsthecognitiveabilityofmice
AT guoxiaolong poreformingtoxinlikeproteinderivedfromchineseredbellytoadbombinamaximatriggersthepyroptosisofhippomalneuralcellsandimpairsthecognitiveabilityofmice