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The Role of Endophilin A1 in Lipopolysaccharide-Induced Parkinson’s Disease Model Mice

BACKGROUND: Endophilin A1 (EPA1) is encoded by the SH3GL2 gene, and SH3GL2 was designated as a Parkinson’s disease (PD) risk locus by genome-wide association analysis, suggesting that EPA1 may be involved in the occurrence and development of PD. OBJECTIVE: To investigate the role of EPA1 in lipopoly...

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Autores principales: Han, Junhui, Liu, Mengqing, Ling, Yi, Ren, Yubo, Qiu, Yue, Liu, Yi, Yin, Yanyan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: IOS Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10473136/
https://www.ncbi.nlm.nih.gov/pubmed/37334616
http://dx.doi.org/10.3233/JPD-225098
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author Han, Junhui
Liu, Mengqing
Ling, Yi
Ren, Yubo
Qiu, Yue
Liu, Yi
Yin, Yanyan
author_facet Han, Junhui
Liu, Mengqing
Ling, Yi
Ren, Yubo
Qiu, Yue
Liu, Yi
Yin, Yanyan
author_sort Han, Junhui
collection PubMed
description BACKGROUND: Endophilin A1 (EPA1) is encoded by the SH3GL2 gene, and SH3GL2 was designated as a Parkinson’s disease (PD) risk locus by genome-wide association analysis, suggesting that EPA1 may be involved in the occurrence and development of PD. OBJECTIVE: To investigate the role of EPA1 in lipopolysaccharide (LPS)-induced PD model mice. METHODS: The mice PD model was prepared by injecting LPS into the substantia nigra (SN), and the changes in the behavioral data of mice in each group were observed. The damage of dopaminergic neurons, activation of microglia, and reactive oxygen species (ROS) generation were detected by immunofluorescence method; calcium ion concentration was detected by calcium content detection kit; EPA1 and inflammation and its related indicators were detected by western blot method. EPA1 knockdown was performed by an adeno-associated virus vector containing EPA1-shRNA-eGFP infusion. RESULTS: LPS-induced PD model mice developed behavioral dysfunction, SN dopaminergic nerve damage, significantly increased calcium ion, calpain 1, and ROS production, activated NLRP1 inflammasome and promoted pro-inflammatory cell release, and SN EPA1 knockdown improves behavioral disorders, alleviates dopaminergic neuron damage, reduces calcium, calpain 1, ROS generation, and blocks NLRP1 inflammasome-driven inflammatory responses. CONCLUSION: The expression of EPA1 in the SN of LPS-induced PD model mice was increased, and it played a role in promoting the occurrence and development of PD. EPA1 knockdown inhibited the NLRP1 inflammasome activation, decreased the release of inflammatory factors and ROS generation, and alleviated dopaminergic neuron damage. This indicated that EPA1 may participating in the occurrence and development of PD.
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spelling pubmed-104731362023-09-02 The Role of Endophilin A1 in Lipopolysaccharide-Induced Parkinson’s Disease Model Mice Han, Junhui Liu, Mengqing Ling, Yi Ren, Yubo Qiu, Yue Liu, Yi Yin, Yanyan J Parkinsons Dis Research Article BACKGROUND: Endophilin A1 (EPA1) is encoded by the SH3GL2 gene, and SH3GL2 was designated as a Parkinson’s disease (PD) risk locus by genome-wide association analysis, suggesting that EPA1 may be involved in the occurrence and development of PD. OBJECTIVE: To investigate the role of EPA1 in lipopolysaccharide (LPS)-induced PD model mice. METHODS: The mice PD model was prepared by injecting LPS into the substantia nigra (SN), and the changes in the behavioral data of mice in each group were observed. The damage of dopaminergic neurons, activation of microglia, and reactive oxygen species (ROS) generation were detected by immunofluorescence method; calcium ion concentration was detected by calcium content detection kit; EPA1 and inflammation and its related indicators were detected by western blot method. EPA1 knockdown was performed by an adeno-associated virus vector containing EPA1-shRNA-eGFP infusion. RESULTS: LPS-induced PD model mice developed behavioral dysfunction, SN dopaminergic nerve damage, significantly increased calcium ion, calpain 1, and ROS production, activated NLRP1 inflammasome and promoted pro-inflammatory cell release, and SN EPA1 knockdown improves behavioral disorders, alleviates dopaminergic neuron damage, reduces calcium, calpain 1, ROS generation, and blocks NLRP1 inflammasome-driven inflammatory responses. CONCLUSION: The expression of EPA1 in the SN of LPS-induced PD model mice was increased, and it played a role in promoting the occurrence and development of PD. EPA1 knockdown inhibited the NLRP1 inflammasome activation, decreased the release of inflammatory factors and ROS generation, and alleviated dopaminergic neuron damage. This indicated that EPA1 may participating in the occurrence and development of PD. IOS Press 2023-07-25 /pmc/articles/PMC10473136/ /pubmed/37334616 http://dx.doi.org/10.3233/JPD-225098 Text en © 2023 – The authors. Published by IOS Press https://creativecommons.org/licenses/by-nc/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution Non-Commercial (CC BY-NC 4.0) License (https://creativecommons.org/licenses/by-nc/4.0/) , which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Han, Junhui
Liu, Mengqing
Ling, Yi
Ren, Yubo
Qiu, Yue
Liu, Yi
Yin, Yanyan
The Role of Endophilin A1 in Lipopolysaccharide-Induced Parkinson’s Disease Model Mice
title The Role of Endophilin A1 in Lipopolysaccharide-Induced Parkinson’s Disease Model Mice
title_full The Role of Endophilin A1 in Lipopolysaccharide-Induced Parkinson’s Disease Model Mice
title_fullStr The Role of Endophilin A1 in Lipopolysaccharide-Induced Parkinson’s Disease Model Mice
title_full_unstemmed The Role of Endophilin A1 in Lipopolysaccharide-Induced Parkinson’s Disease Model Mice
title_short The Role of Endophilin A1 in Lipopolysaccharide-Induced Parkinson’s Disease Model Mice
title_sort role of endophilin a1 in lipopolysaccharide-induced parkinson’s disease model mice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10473136/
https://www.ncbi.nlm.nih.gov/pubmed/37334616
http://dx.doi.org/10.3233/JPD-225098
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