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ZCCHC17 modulates neuronal RNA splicing and supports cognitive resilience in Alzheimer’s disease

ZCCHC17 is a putative master regulator of synaptic gene dysfunction in Alzheimer’s Disease (AD), and ZCCHC17 protein declines early in AD brain tissue, before significant gliosis or neuronal loss. Here, we investigate the function of ZCCHC17 and its role in AD pathogenesis. Co-immunoprecipitation of...

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Autores principales: Bartosch, Anne Marie W., Youth, Elliot H. H., Hansen, Shania, Kaufman, Maria E., Xiao, Harrison, Koo, So Yeon, Ashok, Archana, Sivakumar, Sharanya, Soni, Rajesh K., Dumitrescu, Logan C., Lam, Tiffany G., Ropri, Ali S., Lee, Annie J., Klein, Hans-Ulrich, Vardarajan, Badri N., Bennett, David A., Young-Pearse, Tracy L., De Jager, Philip L., Hohman, Timothy J., Sproul, Andrew A., Teich, Andrew F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10055234/
https://www.ncbi.nlm.nih.gov/pubmed/36993746
http://dx.doi.org/10.1101/2023.03.21.533654
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author Bartosch, Anne Marie W.
Youth, Elliot H. H.
Hansen, Shania
Kaufman, Maria E.
Xiao, Harrison
Koo, So Yeon
Ashok, Archana
Sivakumar, Sharanya
Soni, Rajesh K.
Dumitrescu, Logan C.
Lam, Tiffany G.
Ropri, Ali S.
Lee, Annie J.
Klein, Hans-Ulrich
Vardarajan, Badri N.
Bennett, David A.
Young-Pearse, Tracy L.
De Jager, Philip L.
Hohman, Timothy J.
Sproul, Andrew A.
Teich, Andrew F.
author_facet Bartosch, Anne Marie W.
Youth, Elliot H. H.
Hansen, Shania
Kaufman, Maria E.
Xiao, Harrison
Koo, So Yeon
Ashok, Archana
Sivakumar, Sharanya
Soni, Rajesh K.
Dumitrescu, Logan C.
Lam, Tiffany G.
Ropri, Ali S.
Lee, Annie J.
Klein, Hans-Ulrich
Vardarajan, Badri N.
Bennett, David A.
Young-Pearse, Tracy L.
De Jager, Philip L.
Hohman, Timothy J.
Sproul, Andrew A.
Teich, Andrew F.
author_sort Bartosch, Anne Marie W.
collection PubMed
description ZCCHC17 is a putative master regulator of synaptic gene dysfunction in Alzheimer’s Disease (AD), and ZCCHC17 protein declines early in AD brain tissue, before significant gliosis or neuronal loss. Here, we investigate the function of ZCCHC17 and its role in AD pathogenesis. Co-immunoprecipitation of ZCCHC17 followed by mass spectrometry analysis in human iPSC-derived neurons reveals that ZCCHC17’s binding partners are enriched for RNA splicing proteins. ZCCHC17 knockdown results in widespread RNA splicing changes that significantly overlap with splicing changes found in AD brain tissue, with synaptic genes commonly affected. ZCCHC17 expression correlates with cognitive resilience in AD patients, and we uncover an APOE4 dependent negative correlation of ZCCHC17 expression with tangle burden. Furthermore, a majority of ZCCHC17 interactors also co-IP with known tau interactors, and we find significant overlap between alternatively spliced genes in ZCCHC17 knockdown and tau overexpression neurons. These results demonstrate ZCCHC17’s role in neuronal RNA processing and its interaction with pathology and cognitive resilience in AD, and suggest that maintenance of ZCCHC17 function may be a therapeutic strategy for preserving cognitive function in the setting of AD pathology.
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spelling pubmed-100552342023-03-30 ZCCHC17 modulates neuronal RNA splicing and supports cognitive resilience in Alzheimer’s disease Bartosch, Anne Marie W. Youth, Elliot H. H. Hansen, Shania Kaufman, Maria E. Xiao, Harrison Koo, So Yeon Ashok, Archana Sivakumar, Sharanya Soni, Rajesh K. Dumitrescu, Logan C. Lam, Tiffany G. Ropri, Ali S. Lee, Annie J. Klein, Hans-Ulrich Vardarajan, Badri N. Bennett, David A. Young-Pearse, Tracy L. De Jager, Philip L. Hohman, Timothy J. Sproul, Andrew A. Teich, Andrew F. bioRxiv Article ZCCHC17 is a putative master regulator of synaptic gene dysfunction in Alzheimer’s Disease (AD), and ZCCHC17 protein declines early in AD brain tissue, before significant gliosis or neuronal loss. Here, we investigate the function of ZCCHC17 and its role in AD pathogenesis. Co-immunoprecipitation of ZCCHC17 followed by mass spectrometry analysis in human iPSC-derived neurons reveals that ZCCHC17’s binding partners are enriched for RNA splicing proteins. ZCCHC17 knockdown results in widespread RNA splicing changes that significantly overlap with splicing changes found in AD brain tissue, with synaptic genes commonly affected. ZCCHC17 expression correlates with cognitive resilience in AD patients, and we uncover an APOE4 dependent negative correlation of ZCCHC17 expression with tangle burden. Furthermore, a majority of ZCCHC17 interactors also co-IP with known tau interactors, and we find significant overlap between alternatively spliced genes in ZCCHC17 knockdown and tau overexpression neurons. These results demonstrate ZCCHC17’s role in neuronal RNA processing and its interaction with pathology and cognitive resilience in AD, and suggest that maintenance of ZCCHC17 function may be a therapeutic strategy for preserving cognitive function in the setting of AD pathology. Cold Spring Harbor Laboratory 2023-03-21 /pmc/articles/PMC10055234/ /pubmed/36993746 http://dx.doi.org/10.1101/2023.03.21.533654 Text en https://creativecommons.org/licenses/by-nc-nd/4.0/This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License (https://creativecommons.org/licenses/by-nc-nd/4.0/) , which allows reusers to copy and distribute the material in any medium or format in unadapted form only, for noncommercial purposes only, and only so long as attribution is given to the creator.
spellingShingle Article
Bartosch, Anne Marie W.
Youth, Elliot H. H.
Hansen, Shania
Kaufman, Maria E.
Xiao, Harrison
Koo, So Yeon
Ashok, Archana
Sivakumar, Sharanya
Soni, Rajesh K.
Dumitrescu, Logan C.
Lam, Tiffany G.
Ropri, Ali S.
Lee, Annie J.
Klein, Hans-Ulrich
Vardarajan, Badri N.
Bennett, David A.
Young-Pearse, Tracy L.
De Jager, Philip L.
Hohman, Timothy J.
Sproul, Andrew A.
Teich, Andrew F.
ZCCHC17 modulates neuronal RNA splicing and supports cognitive resilience in Alzheimer’s disease
title ZCCHC17 modulates neuronal RNA splicing and supports cognitive resilience in Alzheimer’s disease
title_full ZCCHC17 modulates neuronal RNA splicing and supports cognitive resilience in Alzheimer’s disease
title_fullStr ZCCHC17 modulates neuronal RNA splicing and supports cognitive resilience in Alzheimer’s disease
title_full_unstemmed ZCCHC17 modulates neuronal RNA splicing and supports cognitive resilience in Alzheimer’s disease
title_short ZCCHC17 modulates neuronal RNA splicing and supports cognitive resilience in Alzheimer’s disease
title_sort zcchc17 modulates neuronal rna splicing and supports cognitive resilience in alzheimer’s disease
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10055234/
https://www.ncbi.nlm.nih.gov/pubmed/36993746
http://dx.doi.org/10.1101/2023.03.21.533654
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