Cargando…

GSK-3β activation accelerates early-stage consumption of Hippocampal Neurogenesis in senescent mice

Adult hippocampal neurogenesis (AHN) deficits contribute to the progression of cognitive impairments during accelerated senescence, with the mechanistic causes poorly understood. Glycogen synthase kinase-3β (GSK-3β) is a critical regulator in prenatal neurodevelopment. The present study aims to stud...

Descripción completa

Detalles Bibliográficos
Autores principales: Liu, Fei, Tian, Na, Zhang, Hua-Qiu, Li, Shi-Hong, Zhou, Qiu-Zhi, Yang, Ying, Zheng, Jie, Wang, Jian-Zhi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7449917/
https://www.ncbi.nlm.nih.gov/pubmed/32863953
http://dx.doi.org/10.7150/thno.43829
_version_ 1783574718105780224
author Liu, Fei
Tian, Na
Zhang, Hua-Qiu
Li, Shi-Hong
Zhou, Qiu-Zhi
Yang, Ying
Zheng, Jie
Wang, Jian-Zhi
author_facet Liu, Fei
Tian, Na
Zhang, Hua-Qiu
Li, Shi-Hong
Zhou, Qiu-Zhi
Yang, Ying
Zheng, Jie
Wang, Jian-Zhi
author_sort Liu, Fei
collection PubMed
description Adult hippocampal neurogenesis (AHN) deficits contribute to the progression of cognitive impairments during accelerated senescence, with the mechanistic causes poorly understood. Glycogen synthase kinase-3β (GSK-3β) is a critical regulator in prenatal neurodevelopment. The present study aims to study whether and how GSK-3β regulates AHN during the accelerated senescence. Methods: AHN and AHN-dependent cognition and GSK-3β were evaluated in 3- and 6-month senescence-accelerated mice prone 8 (SAM-P8) and senescence resistant 1 (SAM-R1) mice, respectively. GSK-3β was selectively overexpressed in wild-type mice using adeno-associated virus, or knocked-out by crossbreeding with GSK-3β floxed mice in the neural stem cells (NSCs) of Nestin-Cre mice, or pharmacologically inhibited with SB216763 in SAM-P8 mice. AHN was evaluated by BrdU-, DCX-staining and retrovirus-labeling. Results: AHN transiently increased at 3-month, but dramatically dropped at 6-month of age in SAM-P8 mice with a simultaneous activation of GSK-3β at 3-month. Selective overexpression of GSK-3β in hippocampal NSCs of wildtype mice induced long-term AHN deficits due to an accelerated depletion of NSC pool, although it transiently increased the proliferation and survival of the newborn neurons. Pharmacologically inhibiting GSK-3β by SB216763 efficiently preserved AHN and improved contextual memory in 6-month SAM-P8 mice, while conditional knock-out of GSK-3β in NSCs impaired AHN. Conclusion: Early-stage activation of GSK-3β in NSCs impairs AHN by accelerating the depletion of NSC pool, and pharmacological inhibition of GSK-3β is efficient to preserve AHN during the accelerated aging. These results reveal novel mechanisms underlying the AHN impairments during accelerated senescence and provide new targets for pro-neurogenic therapies for related diseases.
format Online
Article
Text
id pubmed-7449917
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Ivyspring International Publisher
record_format MEDLINE/PubMed
spelling pubmed-74499172020-08-27 GSK-3β activation accelerates early-stage consumption of Hippocampal Neurogenesis in senescent mice Liu, Fei Tian, Na Zhang, Hua-Qiu Li, Shi-Hong Zhou, Qiu-Zhi Yang, Ying Zheng, Jie Wang, Jian-Zhi Theranostics Research Paper Adult hippocampal neurogenesis (AHN) deficits contribute to the progression of cognitive impairments during accelerated senescence, with the mechanistic causes poorly understood. Glycogen synthase kinase-3β (GSK-3β) is a critical regulator in prenatal neurodevelopment. The present study aims to study whether and how GSK-3β regulates AHN during the accelerated senescence. Methods: AHN and AHN-dependent cognition and GSK-3β were evaluated in 3- and 6-month senescence-accelerated mice prone 8 (SAM-P8) and senescence resistant 1 (SAM-R1) mice, respectively. GSK-3β was selectively overexpressed in wild-type mice using adeno-associated virus, or knocked-out by crossbreeding with GSK-3β floxed mice in the neural stem cells (NSCs) of Nestin-Cre mice, or pharmacologically inhibited with SB216763 in SAM-P8 mice. AHN was evaluated by BrdU-, DCX-staining and retrovirus-labeling. Results: AHN transiently increased at 3-month, but dramatically dropped at 6-month of age in SAM-P8 mice with a simultaneous activation of GSK-3β at 3-month. Selective overexpression of GSK-3β in hippocampal NSCs of wildtype mice induced long-term AHN deficits due to an accelerated depletion of NSC pool, although it transiently increased the proliferation and survival of the newborn neurons. Pharmacologically inhibiting GSK-3β by SB216763 efficiently preserved AHN and improved contextual memory in 6-month SAM-P8 mice, while conditional knock-out of GSK-3β in NSCs impaired AHN. Conclusion: Early-stage activation of GSK-3β in NSCs impairs AHN by accelerating the depletion of NSC pool, and pharmacological inhibition of GSK-3β is efficient to preserve AHN during the accelerated aging. These results reveal novel mechanisms underlying the AHN impairments during accelerated senescence and provide new targets for pro-neurogenic therapies for related diseases. Ivyspring International Publisher 2020-08-01 /pmc/articles/PMC7449917/ /pubmed/32863953 http://dx.doi.org/10.7150/thno.43829 Text en © The author(s) This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Liu, Fei
Tian, Na
Zhang, Hua-Qiu
Li, Shi-Hong
Zhou, Qiu-Zhi
Yang, Ying
Zheng, Jie
Wang, Jian-Zhi
GSK-3β activation accelerates early-stage consumption of Hippocampal Neurogenesis in senescent mice
title GSK-3β activation accelerates early-stage consumption of Hippocampal Neurogenesis in senescent mice
title_full GSK-3β activation accelerates early-stage consumption of Hippocampal Neurogenesis in senescent mice
title_fullStr GSK-3β activation accelerates early-stage consumption of Hippocampal Neurogenesis in senescent mice
title_full_unstemmed GSK-3β activation accelerates early-stage consumption of Hippocampal Neurogenesis in senescent mice
title_short GSK-3β activation accelerates early-stage consumption of Hippocampal Neurogenesis in senescent mice
title_sort gsk-3β activation accelerates early-stage consumption of hippocampal neurogenesis in senescent mice
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7449917/
https://www.ncbi.nlm.nih.gov/pubmed/32863953
http://dx.doi.org/10.7150/thno.43829
work_keys_str_mv AT liufei gsk3bactivationacceleratesearlystageconsumptionofhippocampalneurogenesisinsenescentmice
AT tianna gsk3bactivationacceleratesearlystageconsumptionofhippocampalneurogenesisinsenescentmice
AT zhanghuaqiu gsk3bactivationacceleratesearlystageconsumptionofhippocampalneurogenesisinsenescentmice
AT lishihong gsk3bactivationacceleratesearlystageconsumptionofhippocampalneurogenesisinsenescentmice
AT zhouqiuzhi gsk3bactivationacceleratesearlystageconsumptionofhippocampalneurogenesisinsenescentmice
AT yangying gsk3bactivationacceleratesearlystageconsumptionofhippocampalneurogenesisinsenescentmice
AT zhengjie gsk3bactivationacceleratesearlystageconsumptionofhippocampalneurogenesisinsenescentmice
AT wangjianzhi gsk3bactivationacceleratesearlystageconsumptionofhippocampalneurogenesisinsenescentmice