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Extracellular GAPDH Promotes Alzheimer Disease Progression by Enhancing Amyloid-β Aggregation and Cytotoxicity

Neuronal cell death at late stages of Alzheimer’s disease (AD) causes the release of cytosolic proteins. One of the most abundant such proteins, glyceraldehyde-3-phosphate dehydrogenase (GAPDH), forms stable aggregates with extracellular amyloid-β (Aβ). We detect these aggregates in cerebrospinal fl...

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Autores principales: Lazarev, Vladimir F, Tsolaki, Magda, Mikhaylova, Elena R, Benken, Konstantin A, Shevtsov, Maxim A, Nikotina, Alina D, Lechpammer, Mirna, Mitkevich, Vladimir A, Makarov, Alexander A, Moskalev, Alexey A, Kozin, Sergey A, Margulis, Boris A, Guzhova, Irina V, Nudler, Evgeny
Formato: Online Artículo Texto
Lenguaje:English
Publicado: JKL International LLC 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8279520/
https://www.ncbi.nlm.nih.gov/pubmed/34341704
http://dx.doi.org/10.14336/AD.2020.1230
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author Lazarev, Vladimir F
Tsolaki, Magda
Mikhaylova, Elena R
Benken, Konstantin A
Shevtsov, Maxim A
Nikotina, Alina D
Lechpammer, Mirna
Mitkevich, Vladimir A
Makarov, Alexander A
Moskalev, Alexey A
Kozin, Sergey A
Margulis, Boris A
Guzhova, Irina V
Nudler, Evgeny
author_facet Lazarev, Vladimir F
Tsolaki, Magda
Mikhaylova, Elena R
Benken, Konstantin A
Shevtsov, Maxim A
Nikotina, Alina D
Lechpammer, Mirna
Mitkevich, Vladimir A
Makarov, Alexander A
Moskalev, Alexey A
Kozin, Sergey A
Margulis, Boris A
Guzhova, Irina V
Nudler, Evgeny
author_sort Lazarev, Vladimir F
collection PubMed
description Neuronal cell death at late stages of Alzheimer’s disease (AD) causes the release of cytosolic proteins. One of the most abundant such proteins, glyceraldehyde-3-phosphate dehydrogenase (GAPDH), forms stable aggregates with extracellular amyloid-β (Aβ). We detect these aggregates in cerebrospinal fluid (CSF) from AD patients at levels directly proportional to the progressive stages of AD. We found that GAPDH forms a covalent bond with Q15 of Aβ that is mediated by transglutaminase (tTG). The Q15A substitution weakens the interaction between Aβ and GAPDH and reduces Aβ-GAPDH cytotoxicity. Lentivirus-driven GAPDH overexpression in two AD animal models increased the level of apoptosis of hippocampal cells, neural degeneration, and cognitive dysfunction. In contrast, in vivo knockdown of GAPDH reversed these pathogenic abnormalities suggesting a pivotal role of GAPDH in Aβ-stimulated neurodegeneration. CSF from animals with enhanced GAPDH expression demonstrates increased cytotoxicity in vitro. Furthermore, RX-624, a specific GAPDH small molecular ligand reduced accumulation of Aβ aggregates and reversed memory deficit in AD transgenic mice. These findings argue that extracellular GAPDH compromises Aβ clearance and accelerates neurodegeneration, and, thus, is a promising pharmacological target for AD.
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spelling pubmed-82795202021-08-01 Extracellular GAPDH Promotes Alzheimer Disease Progression by Enhancing Amyloid-β Aggregation and Cytotoxicity Lazarev, Vladimir F Tsolaki, Magda Mikhaylova, Elena R Benken, Konstantin A Shevtsov, Maxim A Nikotina, Alina D Lechpammer, Mirna Mitkevich, Vladimir A Makarov, Alexander A Moskalev, Alexey A Kozin, Sergey A Margulis, Boris A Guzhova, Irina V Nudler, Evgeny Aging Dis Orginal Article Neuronal cell death at late stages of Alzheimer’s disease (AD) causes the release of cytosolic proteins. One of the most abundant such proteins, glyceraldehyde-3-phosphate dehydrogenase (GAPDH), forms stable aggregates with extracellular amyloid-β (Aβ). We detect these aggregates in cerebrospinal fluid (CSF) from AD patients at levels directly proportional to the progressive stages of AD. We found that GAPDH forms a covalent bond with Q15 of Aβ that is mediated by transglutaminase (tTG). The Q15A substitution weakens the interaction between Aβ and GAPDH and reduces Aβ-GAPDH cytotoxicity. Lentivirus-driven GAPDH overexpression in two AD animal models increased the level of apoptosis of hippocampal cells, neural degeneration, and cognitive dysfunction. In contrast, in vivo knockdown of GAPDH reversed these pathogenic abnormalities suggesting a pivotal role of GAPDH in Aβ-stimulated neurodegeneration. CSF from animals with enhanced GAPDH expression demonstrates increased cytotoxicity in vitro. Furthermore, RX-624, a specific GAPDH small molecular ligand reduced accumulation of Aβ aggregates and reversed memory deficit in AD transgenic mice. These findings argue that extracellular GAPDH compromises Aβ clearance and accelerates neurodegeneration, and, thus, is a promising pharmacological target for AD. JKL International LLC 2021-08-01 /pmc/articles/PMC8279520/ /pubmed/34341704 http://dx.doi.org/10.14336/AD.2020.1230 Text en copyright: © 2021 Lazarev et al. https://creativecommons.org/licenses/by/2.0/this is an open access article distributed under the terms of the creative commons attribution license, which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Orginal Article
Lazarev, Vladimir F
Tsolaki, Magda
Mikhaylova, Elena R
Benken, Konstantin A
Shevtsov, Maxim A
Nikotina, Alina D
Lechpammer, Mirna
Mitkevich, Vladimir A
Makarov, Alexander A
Moskalev, Alexey A
Kozin, Sergey A
Margulis, Boris A
Guzhova, Irina V
Nudler, Evgeny
Extracellular GAPDH Promotes Alzheimer Disease Progression by Enhancing Amyloid-β Aggregation and Cytotoxicity
title Extracellular GAPDH Promotes Alzheimer Disease Progression by Enhancing Amyloid-β Aggregation and Cytotoxicity
title_full Extracellular GAPDH Promotes Alzheimer Disease Progression by Enhancing Amyloid-β Aggregation and Cytotoxicity
title_fullStr Extracellular GAPDH Promotes Alzheimer Disease Progression by Enhancing Amyloid-β Aggregation and Cytotoxicity
title_full_unstemmed Extracellular GAPDH Promotes Alzheimer Disease Progression by Enhancing Amyloid-β Aggregation and Cytotoxicity
title_short Extracellular GAPDH Promotes Alzheimer Disease Progression by Enhancing Amyloid-β Aggregation and Cytotoxicity
title_sort extracellular gapdh promotes alzheimer disease progression by enhancing amyloid-β aggregation and cytotoxicity
topic Orginal Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8279520/
https://www.ncbi.nlm.nih.gov/pubmed/34341704
http://dx.doi.org/10.14336/AD.2020.1230
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