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CCR5 deficiency normalizes TIMP levels, working memory, and gamma oscillation power in APOE4 targeted replacement mice

The APOE4 allele increases the risk for Alzheimer’s disease (AD) in a dose-dependent manner and is also associated with cognitive decline in non-demented elderly controls. In mice with targeted gene replacement (TR) of murine APOE with human APOE3 or APOE4, the latter show reduced neuronal dendritic...

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Autores principales: Greco, Griffin A., Rock, Mitchell, Amontree, Matthew, Lanfranco, Maria Fe, Korthas, Holly, Hong, Sung Hyeok, Turner, R. Scott, Rebeck, G. William, Conant, Katherine
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10291850/
https://www.ncbi.nlm.nih.gov/pubmed/36878326
http://dx.doi.org/10.1016/j.nbd.2023.106057
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author Greco, Griffin A.
Rock, Mitchell
Amontree, Matthew
Lanfranco, Maria Fe
Korthas, Holly
Hong, Sung Hyeok
Turner, R. Scott
Rebeck, G. William
Conant, Katherine
author_facet Greco, Griffin A.
Rock, Mitchell
Amontree, Matthew
Lanfranco, Maria Fe
Korthas, Holly
Hong, Sung Hyeok
Turner, R. Scott
Rebeck, G. William
Conant, Katherine
author_sort Greco, Griffin A.
collection PubMed
description The APOE4 allele increases the risk for Alzheimer’s disease (AD) in a dose-dependent manner and is also associated with cognitive decline in non-demented elderly controls. In mice with targeted gene replacement (TR) of murine APOE with human APOE3 or APOE4, the latter show reduced neuronal dendritic complexity and impaired learning. APOE4 TR mice also show reduced gamma oscillation power, a neuronal population activity which is important to learning and memory. Published work has shown that brain extracellular matrix (ECM) can reduce neuroplasticity as well as gamma power, while attenuation of ECM can instead enhance this endpoint. In the present study we examine human cerebrospinal fluid (CSF) samples from APOE3 and APOE4 individuals and brain lysates from APOE3 and APOE4 TR mice for levels of ECM effectors that can increase matrix deposition and restrict neuroplasticity. We find that CCL5, a molecule linked to ECM deposition in liver and kidney, is increased in CSF samples from APOE4 individuals. Levels of tissue inhibitor of metalloproteinases (TIMPs), which inhibit the activity of ECM-degrading enzymes, are also increased in APOE4 CSF as well as astrocyte supernatants brain lysates from APOE4 TR mice. Importantly, as compared to APOE4/wild-type heterozygotes, APOE4/CCR5 knockout heterozygotes show reduced TIMP levels and enhanced EEG gamma power. The latter also show improved learning and memory, suggesting that the CCR5/CCL5 axis could represent a therapeutic target for APOE4 individuals.
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spelling pubmed-102918502023-06-26 CCR5 deficiency normalizes TIMP levels, working memory, and gamma oscillation power in APOE4 targeted replacement mice Greco, Griffin A. Rock, Mitchell Amontree, Matthew Lanfranco, Maria Fe Korthas, Holly Hong, Sung Hyeok Turner, R. Scott Rebeck, G. William Conant, Katherine Neurobiol Dis Article The APOE4 allele increases the risk for Alzheimer’s disease (AD) in a dose-dependent manner and is also associated with cognitive decline in non-demented elderly controls. In mice with targeted gene replacement (TR) of murine APOE with human APOE3 or APOE4, the latter show reduced neuronal dendritic complexity and impaired learning. APOE4 TR mice also show reduced gamma oscillation power, a neuronal population activity which is important to learning and memory. Published work has shown that brain extracellular matrix (ECM) can reduce neuroplasticity as well as gamma power, while attenuation of ECM can instead enhance this endpoint. In the present study we examine human cerebrospinal fluid (CSF) samples from APOE3 and APOE4 individuals and brain lysates from APOE3 and APOE4 TR mice for levels of ECM effectors that can increase matrix deposition and restrict neuroplasticity. We find that CCL5, a molecule linked to ECM deposition in liver and kidney, is increased in CSF samples from APOE4 individuals. Levels of tissue inhibitor of metalloproteinases (TIMPs), which inhibit the activity of ECM-degrading enzymes, are also increased in APOE4 CSF as well as astrocyte supernatants brain lysates from APOE4 TR mice. Importantly, as compared to APOE4/wild-type heterozygotes, APOE4/CCR5 knockout heterozygotes show reduced TIMP levels and enhanced EEG gamma power. The latter also show improved learning and memory, suggesting that the CCR5/CCL5 axis could represent a therapeutic target for APOE4 individuals. 2023-04 2023-03-05 /pmc/articles/PMC10291850/ /pubmed/36878326 http://dx.doi.org/10.1016/j.nbd.2023.106057 Text en https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) ).
spellingShingle Article
Greco, Griffin A.
Rock, Mitchell
Amontree, Matthew
Lanfranco, Maria Fe
Korthas, Holly
Hong, Sung Hyeok
Turner, R. Scott
Rebeck, G. William
Conant, Katherine
CCR5 deficiency normalizes TIMP levels, working memory, and gamma oscillation power in APOE4 targeted replacement mice
title CCR5 deficiency normalizes TIMP levels, working memory, and gamma oscillation power in APOE4 targeted replacement mice
title_full CCR5 deficiency normalizes TIMP levels, working memory, and gamma oscillation power in APOE4 targeted replacement mice
title_fullStr CCR5 deficiency normalizes TIMP levels, working memory, and gamma oscillation power in APOE4 targeted replacement mice
title_full_unstemmed CCR5 deficiency normalizes TIMP levels, working memory, and gamma oscillation power in APOE4 targeted replacement mice
title_short CCR5 deficiency normalizes TIMP levels, working memory, and gamma oscillation power in APOE4 targeted replacement mice
title_sort ccr5 deficiency normalizes timp levels, working memory, and gamma oscillation power in apoe4 targeted replacement mice
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10291850/
https://www.ncbi.nlm.nih.gov/pubmed/36878326
http://dx.doi.org/10.1016/j.nbd.2023.106057
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