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Downregulation of ATP6V1A Involved in Alzheimer's Disease via Synaptic Vesicle Cycle, Phagosome, and Oxidative Phosphorylation

OBJECTIVE: The objective of this study was to investigate the potential molecular mechanisms of ATPase H(+) transporting V1 subunit A (ATP6V1A) underlying Alzheimer's disease (AD). METHODS: Microarray expression data of human temporal cortex samples from the GSE118553 dataset were profiled to s...

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Autores principales: Zhou, Zhike, Bai, Jun, Zhong, Shanshan, Zhang, Rongwei, Kang, Kexin, Zhang, Xiaoqian, Xu, Ying, Zhao, Chuansheng, Zhao, Mei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8087993/
https://www.ncbi.nlm.nih.gov/pubmed/33981384
http://dx.doi.org/10.1155/2021/5555634
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author Zhou, Zhike
Bai, Jun
Zhong, Shanshan
Zhang, Rongwei
Kang, Kexin
Zhang, Xiaoqian
Xu, Ying
Zhao, Chuansheng
Zhao, Mei
author_facet Zhou, Zhike
Bai, Jun
Zhong, Shanshan
Zhang, Rongwei
Kang, Kexin
Zhang, Xiaoqian
Xu, Ying
Zhao, Chuansheng
Zhao, Mei
author_sort Zhou, Zhike
collection PubMed
description OBJECTIVE: The objective of this study was to investigate the potential molecular mechanisms of ATPase H(+) transporting V1 subunit A (ATP6V1A) underlying Alzheimer's disease (AD). METHODS: Microarray expression data of human temporal cortex samples from the GSE118553 dataset were profiled to screen for differentially expressed genes (DEGs) between AD/control and ATP6V1A-low/high groups. Correlations of coexpression modules with AD and ATP6V1A were assessed by weight gene correlation network analysis (WGCNA). DEGs strongly interacting with ATP6V1A were extracted to construct global regulatory network. Further cross-talking pathways of ATP6V1A were identified by functional enrichment analysis. Diagnostic performance of ATP6V1A in AD prediction was evaluated using area under the curve (AUC) analysis. RESULTS: The mean expression of ATP6V1A was significantly downregulated in AD compared with nondementia controls. A total of 1,364 DEGs were overlapped from AD/control and ATP6V1A-low/high groups. Based on these DEGs, four coexpression modules were predicted by WGCNA. The blue, brown, and turquoise modules were significantly correlated with AD and low ATP6V1A, whose DEGs were enriched in phagosome, oxidative phosphorylation, synaptic vesicle cycle, focal adhesion, and gamma-aminobutyric acidergic (GABAergic) synapse. Global regulatory network was constructed to identify the cross-talking pathways of ATP6V1A, such as synaptic vesicle cycle, phagosome, and oxidative phosphorylation. According to the AUC value of 74.2%, low ATP6V1A expression accurately predicted the occurrence of AD. CONCLUSIONS: Our findings highlighted the pleiotropic roles of low ATP6V1A in AD pathogenesis, possibly mediated by synaptic vesicle cycle, phagosome, and oxidative phosphorylation.
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spelling pubmed-80879932021-05-11 Downregulation of ATP6V1A Involved in Alzheimer's Disease via Synaptic Vesicle Cycle, Phagosome, and Oxidative Phosphorylation Zhou, Zhike Bai, Jun Zhong, Shanshan Zhang, Rongwei Kang, Kexin Zhang, Xiaoqian Xu, Ying Zhao, Chuansheng Zhao, Mei Oxid Med Cell Longev Research Article OBJECTIVE: The objective of this study was to investigate the potential molecular mechanisms of ATPase H(+) transporting V1 subunit A (ATP6V1A) underlying Alzheimer's disease (AD). METHODS: Microarray expression data of human temporal cortex samples from the GSE118553 dataset were profiled to screen for differentially expressed genes (DEGs) between AD/control and ATP6V1A-low/high groups. Correlations of coexpression modules with AD and ATP6V1A were assessed by weight gene correlation network analysis (WGCNA). DEGs strongly interacting with ATP6V1A were extracted to construct global regulatory network. Further cross-talking pathways of ATP6V1A were identified by functional enrichment analysis. Diagnostic performance of ATP6V1A in AD prediction was evaluated using area under the curve (AUC) analysis. RESULTS: The mean expression of ATP6V1A was significantly downregulated in AD compared with nondementia controls. A total of 1,364 DEGs were overlapped from AD/control and ATP6V1A-low/high groups. Based on these DEGs, four coexpression modules were predicted by WGCNA. The blue, brown, and turquoise modules were significantly correlated with AD and low ATP6V1A, whose DEGs were enriched in phagosome, oxidative phosphorylation, synaptic vesicle cycle, focal adhesion, and gamma-aminobutyric acidergic (GABAergic) synapse. Global regulatory network was constructed to identify the cross-talking pathways of ATP6V1A, such as synaptic vesicle cycle, phagosome, and oxidative phosphorylation. According to the AUC value of 74.2%, low ATP6V1A expression accurately predicted the occurrence of AD. CONCLUSIONS: Our findings highlighted the pleiotropic roles of low ATP6V1A in AD pathogenesis, possibly mediated by synaptic vesicle cycle, phagosome, and oxidative phosphorylation. Hindawi 2021-04-19 /pmc/articles/PMC8087993/ /pubmed/33981384 http://dx.doi.org/10.1155/2021/5555634 Text en Copyright © 2021 Zhike Zhou et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Zhou, Zhike
Bai, Jun
Zhong, Shanshan
Zhang, Rongwei
Kang, Kexin
Zhang, Xiaoqian
Xu, Ying
Zhao, Chuansheng
Zhao, Mei
Downregulation of ATP6V1A Involved in Alzheimer's Disease via Synaptic Vesicle Cycle, Phagosome, and Oxidative Phosphorylation
title Downregulation of ATP6V1A Involved in Alzheimer's Disease via Synaptic Vesicle Cycle, Phagosome, and Oxidative Phosphorylation
title_full Downregulation of ATP6V1A Involved in Alzheimer's Disease via Synaptic Vesicle Cycle, Phagosome, and Oxidative Phosphorylation
title_fullStr Downregulation of ATP6V1A Involved in Alzheimer's Disease via Synaptic Vesicle Cycle, Phagosome, and Oxidative Phosphorylation
title_full_unstemmed Downregulation of ATP6V1A Involved in Alzheimer's Disease via Synaptic Vesicle Cycle, Phagosome, and Oxidative Phosphorylation
title_short Downregulation of ATP6V1A Involved in Alzheimer's Disease via Synaptic Vesicle Cycle, Phagosome, and Oxidative Phosphorylation
title_sort downregulation of atp6v1a involved in alzheimer's disease via synaptic vesicle cycle, phagosome, and oxidative phosphorylation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8087993/
https://www.ncbi.nlm.nih.gov/pubmed/33981384
http://dx.doi.org/10.1155/2021/5555634
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