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Decoding transcriptomic signatures of Cysteine String Protein alpha-mediated synapse maintenance

Synapse maintenance is essential for generating functional circuitry and decrement in this process is a hallmark of neurodegenerative disease. While we are beginning to understand the basis of synapse formation, much less is known about synapse maintenance in vivo. Cysteine string protein α (CSPα),...

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Autores principales: Wang, Na, Zhu, Biqing, Allnutt, Mary Alice, Grijalva, Rosalie M., Zhao, Hongyu, Chandra, Sreeganga S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10592922/
https://www.ncbi.nlm.nih.gov/pubmed/37873460
http://dx.doi.org/10.1101/2023.10.02.560611
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author Wang, Na
Zhu, Biqing
Allnutt, Mary Alice
Grijalva, Rosalie M.
Zhao, Hongyu
Chandra, Sreeganga S.
author_facet Wang, Na
Zhu, Biqing
Allnutt, Mary Alice
Grijalva, Rosalie M.
Zhao, Hongyu
Chandra, Sreeganga S.
author_sort Wang, Na
collection PubMed
description Synapse maintenance is essential for generating functional circuitry and decrement in this process is a hallmark of neurodegenerative disease. While we are beginning to understand the basis of synapse formation, much less is known about synapse maintenance in vivo. Cysteine string protein α (CSPα), encoded by the Dnajc5 gene, is a synaptic vesicle chaperone that is necessary for synapse maintenance and linked to neurodegeneration. To investigate the transcriptional changes associated with synapse maintenance, we performed single nucleus transcriptomics on the cortex of young CSPα knockout (KO) mice and littermate controls. Through differential expression and gene ontology analysis, we observed that both neurons and glial cells exhibit unique signatures in CSPα KO brain. Significantly all neurons in CSPα KO brains show strong signatures of repression in synaptic pathways, while upregulating autophagy related genes. Through visualization of synapses and autophagosomes by electron microscopy, we confirmed these alterations especially in inhibitory synapses. By imputing cell-cell interactions, we found that neuron-glia interactions were specifically increased in CSPα KO mice. This was mediated by synaptogenic adhesion molecules, including the classical Neurexin1-Neuroligin 1 pair, suggesting that communication of glial cells with neurons is strengthened in CSPα KO mice in an attempt to achieve synapse maintenance. Together, this study reveals unique cellular and molecular transcriptional changes in CSPα KO cortex and provides new insights into synapse maintenance and neurodegeneration.
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spelling pubmed-105929222023-10-24 Decoding transcriptomic signatures of Cysteine String Protein alpha-mediated synapse maintenance Wang, Na Zhu, Biqing Allnutt, Mary Alice Grijalva, Rosalie M. Zhao, Hongyu Chandra, Sreeganga S. bioRxiv Article Synapse maintenance is essential for generating functional circuitry and decrement in this process is a hallmark of neurodegenerative disease. While we are beginning to understand the basis of synapse formation, much less is known about synapse maintenance in vivo. Cysteine string protein α (CSPα), encoded by the Dnajc5 gene, is a synaptic vesicle chaperone that is necessary for synapse maintenance and linked to neurodegeneration. To investigate the transcriptional changes associated with synapse maintenance, we performed single nucleus transcriptomics on the cortex of young CSPα knockout (KO) mice and littermate controls. Through differential expression and gene ontology analysis, we observed that both neurons and glial cells exhibit unique signatures in CSPα KO brain. Significantly all neurons in CSPα KO brains show strong signatures of repression in synaptic pathways, while upregulating autophagy related genes. Through visualization of synapses and autophagosomes by electron microscopy, we confirmed these alterations especially in inhibitory synapses. By imputing cell-cell interactions, we found that neuron-glia interactions were specifically increased in CSPα KO mice. This was mediated by synaptogenic adhesion molecules, including the classical Neurexin1-Neuroligin 1 pair, suggesting that communication of glial cells with neurons is strengthened in CSPα KO mice in an attempt to achieve synapse maintenance. Together, this study reveals unique cellular and molecular transcriptional changes in CSPα KO cortex and provides new insights into synapse maintenance and neurodegeneration. Cold Spring Harbor Laboratory 2023-10-03 /pmc/articles/PMC10592922/ /pubmed/37873460 http://dx.doi.org/10.1101/2023.10.02.560611 Text en https://creativecommons.org/licenses/by-nc/4.0/This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License (https://creativecommons.org/licenses/by-nc/4.0/) , which allows reusers to distribute, remix, adapt, and build upon the material in any medium or format for noncommercial purposes only, and only so long as attribution is given to the creator.
spellingShingle Article
Wang, Na
Zhu, Biqing
Allnutt, Mary Alice
Grijalva, Rosalie M.
Zhao, Hongyu
Chandra, Sreeganga S.
Decoding transcriptomic signatures of Cysteine String Protein alpha-mediated synapse maintenance
title Decoding transcriptomic signatures of Cysteine String Protein alpha-mediated synapse maintenance
title_full Decoding transcriptomic signatures of Cysteine String Protein alpha-mediated synapse maintenance
title_fullStr Decoding transcriptomic signatures of Cysteine String Protein alpha-mediated synapse maintenance
title_full_unstemmed Decoding transcriptomic signatures of Cysteine String Protein alpha-mediated synapse maintenance
title_short Decoding transcriptomic signatures of Cysteine String Protein alpha-mediated synapse maintenance
title_sort decoding transcriptomic signatures of cysteine string protein alpha-mediated synapse maintenance
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10592922/
https://www.ncbi.nlm.nih.gov/pubmed/37873460
http://dx.doi.org/10.1101/2023.10.02.560611
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