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Nerve growth factor receptor (Ngfr) induces neurogenic plasticity by suppressing reactive astroglial Lcn2/Slc22a17 signaling in Alzheimer’s disease

Neurogenesis, crucial for brain resilience, is reduced in Alzheimer’s disease (AD) that induces astroglial reactivity at the expense of the pro-neurogenic potential, and restoring neurogenesis could counteract neurodegenerative pathology. However, the molecular mechanisms promoting pro-neurogenic as...

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Autores principales: Siddiqui, Tohid, Cosacak, Mehmet Ilyas, Popova, Stanislava, Bhattarai, Prabesh, Yilmaz, Elanur, Lee, Annie J., Min, Yuhao, Wang, Xue, Allen, Mariet, İş, Özkan, Atasavum, Zeynep Tansu, Rodriguez-Muela, Natalia, Vardarajan, Badri N., Flaherty, Delaney, Teich, Andrew F., Santa-Maria, Ismael, Freudenberg, Uwe, Werner, Carsten, Tosto, Giuseppe, Mayeux, Richard, Ertekin-Taner, Nilüfer, Kizil, Caghan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10333226/
https://www.ncbi.nlm.nih.gov/pubmed/37429840
http://dx.doi.org/10.1038/s41536-023-00311-5
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author Siddiqui, Tohid
Cosacak, Mehmet Ilyas
Popova, Stanislava
Bhattarai, Prabesh
Yilmaz, Elanur
Lee, Annie J.
Min, Yuhao
Wang, Xue
Allen, Mariet
İş, Özkan
Atasavum, Zeynep Tansu
Rodriguez-Muela, Natalia
Vardarajan, Badri N.
Flaherty, Delaney
Teich, Andrew F.
Santa-Maria, Ismael
Freudenberg, Uwe
Werner, Carsten
Tosto, Giuseppe
Mayeux, Richard
Ertekin-Taner, Nilüfer
Kizil, Caghan
author_facet Siddiqui, Tohid
Cosacak, Mehmet Ilyas
Popova, Stanislava
Bhattarai, Prabesh
Yilmaz, Elanur
Lee, Annie J.
Min, Yuhao
Wang, Xue
Allen, Mariet
İş, Özkan
Atasavum, Zeynep Tansu
Rodriguez-Muela, Natalia
Vardarajan, Badri N.
Flaherty, Delaney
Teich, Andrew F.
Santa-Maria, Ismael
Freudenberg, Uwe
Werner, Carsten
Tosto, Giuseppe
Mayeux, Richard
Ertekin-Taner, Nilüfer
Kizil, Caghan
author_sort Siddiqui, Tohid
collection PubMed
description Neurogenesis, crucial for brain resilience, is reduced in Alzheimer’s disease (AD) that induces astroglial reactivity at the expense of the pro-neurogenic potential, and restoring neurogenesis could counteract neurodegenerative pathology. However, the molecular mechanisms promoting pro-neurogenic astroglial fate despite AD pathology are unknown. In this study, we used APP/PS1dE9 mouse model and induced Nerve growth factor receptor (Ngfr) expression in the hippocampus. Ngfr, which promotes neurogenic fate of astroglia during the amyloid pathology-induced neuroregeneration in zebrafish brain, stimulated proliferative and neurogenic outcomes. Histological analyses of the changes in proliferation and neurogenesis, single-cell transcriptomics, spatial proteomics, and functional knockdown studies showed that the induced expression of Ngfr reduced the reactive astrocyte marker Lipocalin-2 (Lcn2), which we found was sufficient to reduce neurogenesis in astroglia. Anti-neurogenic effects of Lcn2 was mediated by Slc22a17, blockage of which recapitulated the pro-neurogenicity by Ngfr. Long-term Ngfr expression reduced amyloid plaques and Tau phosphorylation. Postmortem human AD hippocampi and 3D human astroglial cultures showed elevated LCN2 levels correlate with reactive gliosis and reduced neurogenesis. Comparing transcriptional changes in mouse, zebrafish, and human AD brains for cell intrinsic differential gene expression and weighted gene co-expression networks revealed common altered downstream effectors of NGFR signaling, such as PFKP, which can enhance proliferation and neurogenesis in vitro when blocked. Our study suggests that the reactive non-neurogenic astroglia in AD can be coaxed to a pro-neurogenic fate and AD pathology can be alleviated with Ngfr. We suggest that enhancing pro-neurogenic astroglial fate may have therapeutic ramifications in AD.
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spelling pubmed-103332262023-07-12 Nerve growth factor receptor (Ngfr) induces neurogenic plasticity by suppressing reactive astroglial Lcn2/Slc22a17 signaling in Alzheimer’s disease Siddiqui, Tohid Cosacak, Mehmet Ilyas Popova, Stanislava Bhattarai, Prabesh Yilmaz, Elanur Lee, Annie J. Min, Yuhao Wang, Xue Allen, Mariet İş, Özkan Atasavum, Zeynep Tansu Rodriguez-Muela, Natalia Vardarajan, Badri N. Flaherty, Delaney Teich, Andrew F. Santa-Maria, Ismael Freudenberg, Uwe Werner, Carsten Tosto, Giuseppe Mayeux, Richard Ertekin-Taner, Nilüfer Kizil, Caghan NPJ Regen Med Article Neurogenesis, crucial for brain resilience, is reduced in Alzheimer’s disease (AD) that induces astroglial reactivity at the expense of the pro-neurogenic potential, and restoring neurogenesis could counteract neurodegenerative pathology. However, the molecular mechanisms promoting pro-neurogenic astroglial fate despite AD pathology are unknown. In this study, we used APP/PS1dE9 mouse model and induced Nerve growth factor receptor (Ngfr) expression in the hippocampus. Ngfr, which promotes neurogenic fate of astroglia during the amyloid pathology-induced neuroregeneration in zebrafish brain, stimulated proliferative and neurogenic outcomes. Histological analyses of the changes in proliferation and neurogenesis, single-cell transcriptomics, spatial proteomics, and functional knockdown studies showed that the induced expression of Ngfr reduced the reactive astrocyte marker Lipocalin-2 (Lcn2), which we found was sufficient to reduce neurogenesis in astroglia. Anti-neurogenic effects of Lcn2 was mediated by Slc22a17, blockage of which recapitulated the pro-neurogenicity by Ngfr. Long-term Ngfr expression reduced amyloid plaques and Tau phosphorylation. Postmortem human AD hippocampi and 3D human astroglial cultures showed elevated LCN2 levels correlate with reactive gliosis and reduced neurogenesis. Comparing transcriptional changes in mouse, zebrafish, and human AD brains for cell intrinsic differential gene expression and weighted gene co-expression networks revealed common altered downstream effectors of NGFR signaling, such as PFKP, which can enhance proliferation and neurogenesis in vitro when blocked. Our study suggests that the reactive non-neurogenic astroglia in AD can be coaxed to a pro-neurogenic fate and AD pathology can be alleviated with Ngfr. We suggest that enhancing pro-neurogenic astroglial fate may have therapeutic ramifications in AD. Nature Publishing Group UK 2023-07-10 /pmc/articles/PMC10333226/ /pubmed/37429840 http://dx.doi.org/10.1038/s41536-023-00311-5 Text en © The Author(s) 2023 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Siddiqui, Tohid
Cosacak, Mehmet Ilyas
Popova, Stanislava
Bhattarai, Prabesh
Yilmaz, Elanur
Lee, Annie J.
Min, Yuhao
Wang, Xue
Allen, Mariet
İş, Özkan
Atasavum, Zeynep Tansu
Rodriguez-Muela, Natalia
Vardarajan, Badri N.
Flaherty, Delaney
Teich, Andrew F.
Santa-Maria, Ismael
Freudenberg, Uwe
Werner, Carsten
Tosto, Giuseppe
Mayeux, Richard
Ertekin-Taner, Nilüfer
Kizil, Caghan
Nerve growth factor receptor (Ngfr) induces neurogenic plasticity by suppressing reactive astroglial Lcn2/Slc22a17 signaling in Alzheimer’s disease
title Nerve growth factor receptor (Ngfr) induces neurogenic plasticity by suppressing reactive astroglial Lcn2/Slc22a17 signaling in Alzheimer’s disease
title_full Nerve growth factor receptor (Ngfr) induces neurogenic plasticity by suppressing reactive astroglial Lcn2/Slc22a17 signaling in Alzheimer’s disease
title_fullStr Nerve growth factor receptor (Ngfr) induces neurogenic plasticity by suppressing reactive astroglial Lcn2/Slc22a17 signaling in Alzheimer’s disease
title_full_unstemmed Nerve growth factor receptor (Ngfr) induces neurogenic plasticity by suppressing reactive astroglial Lcn2/Slc22a17 signaling in Alzheimer’s disease
title_short Nerve growth factor receptor (Ngfr) induces neurogenic plasticity by suppressing reactive astroglial Lcn2/Slc22a17 signaling in Alzheimer’s disease
title_sort nerve growth factor receptor (ngfr) induces neurogenic plasticity by suppressing reactive astroglial lcn2/slc22a17 signaling in alzheimer’s disease
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10333226/
https://www.ncbi.nlm.nih.gov/pubmed/37429840
http://dx.doi.org/10.1038/s41536-023-00311-5
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