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Linking Gba1 E326K mutation to microglia activation and mild age-dependent dopaminergic Neurodegeneration

Mutations in the GBA1 gene have been identified as a prevalent genetic risk factor for Parkinson’s disease (PD). GBA1 mutations impair enzymatic activity, leading to lysosomal dysfunction and elevated levels of α-synuclein (α-syn). While most research has primarily focused on GBA1’s role in promotin...

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Autores principales: Kweon, Sin Ho, Ryu, Hye Guk, Park, Hyeonwoo, Lee, Saebom, Kim, Namshik, Kwon, Seung-Hwan, Ma, Shi-Xun, Kim, Sangjune, Ko, Han Seok
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10515932/
https://www.ncbi.nlm.nih.gov/pubmed/37745332
http://dx.doi.org/10.1101/2023.09.14.557673
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author Kweon, Sin Ho
Ryu, Hye Guk
Park, Hyeonwoo
Lee, Saebom
Kim, Namshik
Kwon, Seung-Hwan
Ma, Shi-Xun
Kim, Sangjune
Ko, Han Seok
author_facet Kweon, Sin Ho
Ryu, Hye Guk
Park, Hyeonwoo
Lee, Saebom
Kim, Namshik
Kwon, Seung-Hwan
Ma, Shi-Xun
Kim, Sangjune
Ko, Han Seok
author_sort Kweon, Sin Ho
collection PubMed
description Mutations in the GBA1 gene have been identified as a prevalent genetic risk factor for Parkinson’s disease (PD). GBA1 mutations impair enzymatic activity, leading to lysosomal dysfunction and elevated levels of α-synuclein (α-syn). While most research has primarily focused on GBA1’s role in promoting synucleinopathy, emerging evidence suggests that neuroinflammation may be a key pathogenic alteration caused by GBA1 deficiency. To examine the molecular mechanism underlying GBA1 deficiency-mediated neuroinflammation, we generated Gba1 E326K knock-in (KI) mice using the CRISPR/Cas9 technology, which is linked to an increased risk of PD and dementia with Lewy bodies (DLB). In the ventral midbrain and hippocampus of 24-month-old Gba1 E326K KI mice, we found a moderate decline in GBA1 enzymatic activity, a buildup of glucosylceramide, and an increase in microglia density. Furthermore, we observed increased levels of pro-inflammatory cytokines and formation of reactive astrocytes in primary microglia and astrocytes, respectively, cultured from Gba1 E326K KI mice following treatment with pathologic α-syn preformed fibrils (PFF). Additionally, the gut inoculation of α-syn PFF in Gba1 E326K KI mice significantly enhanced the accumulation of Lewy bodies in the dentate gyrus of the hippocampus, accompanied by aggravated neuroinflammation and exacerbated non-motor symptoms. This research significantly enhances our understanding of the Gba1 E326K mutation’s involvement in neuroinflammation and the cell-to-cell transmission of pathogenic α-syn in the brain, thereby opening new therapeutic avenues.
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spelling pubmed-105159322023-09-23 Linking Gba1 E326K mutation to microglia activation and mild age-dependent dopaminergic Neurodegeneration Kweon, Sin Ho Ryu, Hye Guk Park, Hyeonwoo Lee, Saebom Kim, Namshik Kwon, Seung-Hwan Ma, Shi-Xun Kim, Sangjune Ko, Han Seok bioRxiv Article Mutations in the GBA1 gene have been identified as a prevalent genetic risk factor for Parkinson’s disease (PD). GBA1 mutations impair enzymatic activity, leading to lysosomal dysfunction and elevated levels of α-synuclein (α-syn). While most research has primarily focused on GBA1’s role in promoting synucleinopathy, emerging evidence suggests that neuroinflammation may be a key pathogenic alteration caused by GBA1 deficiency. To examine the molecular mechanism underlying GBA1 deficiency-mediated neuroinflammation, we generated Gba1 E326K knock-in (KI) mice using the CRISPR/Cas9 technology, which is linked to an increased risk of PD and dementia with Lewy bodies (DLB). In the ventral midbrain and hippocampus of 24-month-old Gba1 E326K KI mice, we found a moderate decline in GBA1 enzymatic activity, a buildup of glucosylceramide, and an increase in microglia density. Furthermore, we observed increased levels of pro-inflammatory cytokines and formation of reactive astrocytes in primary microglia and astrocytes, respectively, cultured from Gba1 E326K KI mice following treatment with pathologic α-syn preformed fibrils (PFF). Additionally, the gut inoculation of α-syn PFF in Gba1 E326K KI mice significantly enhanced the accumulation of Lewy bodies in the dentate gyrus of the hippocampus, accompanied by aggravated neuroinflammation and exacerbated non-motor symptoms. This research significantly enhances our understanding of the Gba1 E326K mutation’s involvement in neuroinflammation and the cell-to-cell transmission of pathogenic α-syn in the brain, thereby opening new therapeutic avenues. Cold Spring Harbor Laboratory 2023-09-14 /pmc/articles/PMC10515932/ /pubmed/37745332 http://dx.doi.org/10.1101/2023.09.14.557673 Text en https://creativecommons.org/licenses/by/4.0/This work is licensed under a Creative Commons Attribution 4.0 International License (https://creativecommons.org/licenses/by/4.0/) , which allows reusers to distribute, remix, adapt, and build upon the material in any medium or format, so long as attribution is given to the creator. The license allows for commercial use.
spellingShingle Article
Kweon, Sin Ho
Ryu, Hye Guk
Park, Hyeonwoo
Lee, Saebom
Kim, Namshik
Kwon, Seung-Hwan
Ma, Shi-Xun
Kim, Sangjune
Ko, Han Seok
Linking Gba1 E326K mutation to microglia activation and mild age-dependent dopaminergic Neurodegeneration
title Linking Gba1 E326K mutation to microglia activation and mild age-dependent dopaminergic Neurodegeneration
title_full Linking Gba1 E326K mutation to microglia activation and mild age-dependent dopaminergic Neurodegeneration
title_fullStr Linking Gba1 E326K mutation to microglia activation and mild age-dependent dopaminergic Neurodegeneration
title_full_unstemmed Linking Gba1 E326K mutation to microglia activation and mild age-dependent dopaminergic Neurodegeneration
title_short Linking Gba1 E326K mutation to microglia activation and mild age-dependent dopaminergic Neurodegeneration
title_sort linking gba1 e326k mutation to microglia activation and mild age-dependent dopaminergic neurodegeneration
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10515932/
https://www.ncbi.nlm.nih.gov/pubmed/37745332
http://dx.doi.org/10.1101/2023.09.14.557673
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