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ATP13A2 Declines Zinc-Induced Accumulation of α-Synuclein in a Parkinson’s Disease Model

Parkinson’s disease (PD) is characterized by the presence of Lewy bodies caused by α-synuclein. The imbalance of zinc homeostasis is a major cause of PD, promoting α-synuclein accumulation. ATP13A2, a transporter found in acidic vesicles, plays an important role in Zn(2+) homeostasis and is highly e...

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Autores principales: Gao, Huiling, Sun, Hehong, Yan, Nan, Zhao, Pu, Xu, He, Zheng, Wei, Zhang, Xiaoyu, Wang, Tao, Guo, Chuang, Zhong, Manli
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9318580/
https://www.ncbi.nlm.nih.gov/pubmed/35887392
http://dx.doi.org/10.3390/ijms23148035
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author Gao, Huiling
Sun, Hehong
Yan, Nan
Zhao, Pu
Xu, He
Zheng, Wei
Zhang, Xiaoyu
Wang, Tao
Guo, Chuang
Zhong, Manli
author_facet Gao, Huiling
Sun, Hehong
Yan, Nan
Zhao, Pu
Xu, He
Zheng, Wei
Zhang, Xiaoyu
Wang, Tao
Guo, Chuang
Zhong, Manli
author_sort Gao, Huiling
collection PubMed
description Parkinson’s disease (PD) is characterized by the presence of Lewy bodies caused by α-synuclein. The imbalance of zinc homeostasis is a major cause of PD, promoting α-synuclein accumulation. ATP13A2, a transporter found in acidic vesicles, plays an important role in Zn(2+) homeostasis and is highly expressed in Lewy bodies in PD-surviving neurons. ATP13A2 is involved in the transport of zinc ions in lysosomes and exosomes and inhibits the aggregation of α-synuclein. However, the potential mechanism underlying the regulation of zinc homeostasis and α-synuclein accumulation by ATP13A2 remains unexplored. We used α-synuclein-GFP transgenic mice and HEK293 α-synuclein-DsRed cell line as models. The spatial exploration behavior of mice was significantly reduced, and phosphorylation levels of α-synuclein increased upon high Zn(2+) treatment. High Zn(2+) also inhibited the autophagy pathway by reducing LAMP2a levels and changing the expression of LC3 and P62, by reducing mitochondrial membrane potential and increasing the expression of cytochrom C, and by activating the ERK/P38 apoptosis signaling pathway, ultimately leading to increased caspase 3 levels. These protein changes were reversed after ATP13A2 overexpression, whereas ATP13A2 knockout exacerbated α-synuclein phosphorylation levels. These results suggest that ATP13A2 may have a protective effect on Zn(2+)-induced abnormal aggregation of α-synuclein, lysosomal dysfunction, and apoptosis.
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spelling pubmed-93185802022-07-27 ATP13A2 Declines Zinc-Induced Accumulation of α-Synuclein in a Parkinson’s Disease Model Gao, Huiling Sun, Hehong Yan, Nan Zhao, Pu Xu, He Zheng, Wei Zhang, Xiaoyu Wang, Tao Guo, Chuang Zhong, Manli Int J Mol Sci Article Parkinson’s disease (PD) is characterized by the presence of Lewy bodies caused by α-synuclein. The imbalance of zinc homeostasis is a major cause of PD, promoting α-synuclein accumulation. ATP13A2, a transporter found in acidic vesicles, plays an important role in Zn(2+) homeostasis and is highly expressed in Lewy bodies in PD-surviving neurons. ATP13A2 is involved in the transport of zinc ions in lysosomes and exosomes and inhibits the aggregation of α-synuclein. However, the potential mechanism underlying the regulation of zinc homeostasis and α-synuclein accumulation by ATP13A2 remains unexplored. We used α-synuclein-GFP transgenic mice and HEK293 α-synuclein-DsRed cell line as models. The spatial exploration behavior of mice was significantly reduced, and phosphorylation levels of α-synuclein increased upon high Zn(2+) treatment. High Zn(2+) also inhibited the autophagy pathway by reducing LAMP2a levels and changing the expression of LC3 and P62, by reducing mitochondrial membrane potential and increasing the expression of cytochrom C, and by activating the ERK/P38 apoptosis signaling pathway, ultimately leading to increased caspase 3 levels. These protein changes were reversed after ATP13A2 overexpression, whereas ATP13A2 knockout exacerbated α-synuclein phosphorylation levels. These results suggest that ATP13A2 may have a protective effect on Zn(2+)-induced abnormal aggregation of α-synuclein, lysosomal dysfunction, and apoptosis. MDPI 2022-07-21 /pmc/articles/PMC9318580/ /pubmed/35887392 http://dx.doi.org/10.3390/ijms23148035 Text en © 2022 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
Gao, Huiling
Sun, Hehong
Yan, Nan
Zhao, Pu
Xu, He
Zheng, Wei
Zhang, Xiaoyu
Wang, Tao
Guo, Chuang
Zhong, Manli
ATP13A2 Declines Zinc-Induced Accumulation of α-Synuclein in a Parkinson’s Disease Model
title ATP13A2 Declines Zinc-Induced Accumulation of α-Synuclein in a Parkinson’s Disease Model
title_full ATP13A2 Declines Zinc-Induced Accumulation of α-Synuclein in a Parkinson’s Disease Model
title_fullStr ATP13A2 Declines Zinc-Induced Accumulation of α-Synuclein in a Parkinson’s Disease Model
title_full_unstemmed ATP13A2 Declines Zinc-Induced Accumulation of α-Synuclein in a Parkinson’s Disease Model
title_short ATP13A2 Declines Zinc-Induced Accumulation of α-Synuclein in a Parkinson’s Disease Model
title_sort atp13a2 declines zinc-induced accumulation of α-synuclein in a parkinson’s disease model
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9318580/
https://www.ncbi.nlm.nih.gov/pubmed/35887392
http://dx.doi.org/10.3390/ijms23148035
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