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Distinct dual roles of p-Tyr42 RhoA GTPase in tau phosphorylation and ATP citrate lyase activation upon different Aβ concentrations

Both the accumulation of Amyloid-β (Aβ) in plaques and phosphorylation of Tau protein (p-Tau) in neurofibrillary tangles have been identified as two major symptomatic features of Alzheimer's disease (AD). Despite of critical role of Aβ and p-Tau in AD progress, the interconnection of signalling...

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Autores principales: Cap, Kim Cuong, Jung, Yeon-Joo, Choi, Bo Young, Hyeon, Seung Jae, Kim, Jae-Gyu, Min, Jung-Ki, Islam, Rokibul, Hossain, Abu Jubayer, Chung, Won-Suk, Suh, Sang Won, Ryu, Hoon, Park, Jae-Bong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7264465/
https://www.ncbi.nlm.nih.gov/pubmed/32046944
http://dx.doi.org/10.1016/j.redox.2020.101446
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author Cap, Kim Cuong
Jung, Yeon-Joo
Choi, Bo Young
Hyeon, Seung Jae
Kim, Jae-Gyu
Min, Jung-Ki
Islam, Rokibul
Hossain, Abu Jubayer
Chung, Won-Suk
Suh, Sang Won
Ryu, Hoon
Park, Jae-Bong
author_facet Cap, Kim Cuong
Jung, Yeon-Joo
Choi, Bo Young
Hyeon, Seung Jae
Kim, Jae-Gyu
Min, Jung-Ki
Islam, Rokibul
Hossain, Abu Jubayer
Chung, Won-Suk
Suh, Sang Won
Ryu, Hoon
Park, Jae-Bong
author_sort Cap, Kim Cuong
collection PubMed
description Both the accumulation of Amyloid-β (Aβ) in plaques and phosphorylation of Tau protein (p-Tau) in neurofibrillary tangles have been identified as two major symptomatic features of Alzheimer's disease (AD). Despite of critical role of Aβ and p-Tau in AD progress, the interconnection of signalling pathways that Aβ induces p-Tau remains elusive. Herein, we observed that a popular AD model mouse (APP/PS1) and Aβ-injected mouse showed an increase in p-Tyr42 Rho in hippocampus of brain. Low concentrations of Aβ (1 μM) induced RhoA-mediated Ser422 phosphorylation of Tau protein (p-Ser422 Tau), but reduced the expression of ATP citrate lyase (ACL) in the HT22 hippocampal neuronal cell line. In contrast, high concentrations of Aβ (10 μM) along with high levels of superoxide production remarkably attenuated accumulation of p-Ser422 Tau, but augmented ACL expression and activated sterol regulatory element-binding protein 1 (SREBP1), leading to cellular senescence. Notably, a high concentration of Aβ (10 μM) induced nuclear localization of p-Tyr42 Rho, which positively regulated NAD kinase (NADK) expression by binding to the NADK promoter. Furthermore, severe AD patient brain showed high p-Tyr42 Rho levels. Collectively, our findings indicate that both high and low concentrations of Aβ are detrimental to neurons via distinct two p-Tyr42 RhoA-mediated signalling pathways in Ser422 phosphorylation of Tau and ACL expression.
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spelling pubmed-72644652020-06-05 Distinct dual roles of p-Tyr42 RhoA GTPase in tau phosphorylation and ATP citrate lyase activation upon different Aβ concentrations Cap, Kim Cuong Jung, Yeon-Joo Choi, Bo Young Hyeon, Seung Jae Kim, Jae-Gyu Min, Jung-Ki Islam, Rokibul Hossain, Abu Jubayer Chung, Won-Suk Suh, Sang Won Ryu, Hoon Park, Jae-Bong Redox Biol Research Paper Both the accumulation of Amyloid-β (Aβ) in plaques and phosphorylation of Tau protein (p-Tau) in neurofibrillary tangles have been identified as two major symptomatic features of Alzheimer's disease (AD). Despite of critical role of Aβ and p-Tau in AD progress, the interconnection of signalling pathways that Aβ induces p-Tau remains elusive. Herein, we observed that a popular AD model mouse (APP/PS1) and Aβ-injected mouse showed an increase in p-Tyr42 Rho in hippocampus of brain. Low concentrations of Aβ (1 μM) induced RhoA-mediated Ser422 phosphorylation of Tau protein (p-Ser422 Tau), but reduced the expression of ATP citrate lyase (ACL) in the HT22 hippocampal neuronal cell line. In contrast, high concentrations of Aβ (10 μM) along with high levels of superoxide production remarkably attenuated accumulation of p-Ser422 Tau, but augmented ACL expression and activated sterol regulatory element-binding protein 1 (SREBP1), leading to cellular senescence. Notably, a high concentration of Aβ (10 μM) induced nuclear localization of p-Tyr42 Rho, which positively regulated NAD kinase (NADK) expression by binding to the NADK promoter. Furthermore, severe AD patient brain showed high p-Tyr42 Rho levels. Collectively, our findings indicate that both high and low concentrations of Aβ are detrimental to neurons via distinct two p-Tyr42 RhoA-mediated signalling pathways in Ser422 phosphorylation of Tau and ACL expression. Elsevier 2020-01-31 /pmc/articles/PMC7264465/ /pubmed/32046944 http://dx.doi.org/10.1016/j.redox.2020.101446 Text en © 2020 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Paper
Cap, Kim Cuong
Jung, Yeon-Joo
Choi, Bo Young
Hyeon, Seung Jae
Kim, Jae-Gyu
Min, Jung-Ki
Islam, Rokibul
Hossain, Abu Jubayer
Chung, Won-Suk
Suh, Sang Won
Ryu, Hoon
Park, Jae-Bong
Distinct dual roles of p-Tyr42 RhoA GTPase in tau phosphorylation and ATP citrate lyase activation upon different Aβ concentrations
title Distinct dual roles of p-Tyr42 RhoA GTPase in tau phosphorylation and ATP citrate lyase activation upon different Aβ concentrations
title_full Distinct dual roles of p-Tyr42 RhoA GTPase in tau phosphorylation and ATP citrate lyase activation upon different Aβ concentrations
title_fullStr Distinct dual roles of p-Tyr42 RhoA GTPase in tau phosphorylation and ATP citrate lyase activation upon different Aβ concentrations
title_full_unstemmed Distinct dual roles of p-Tyr42 RhoA GTPase in tau phosphorylation and ATP citrate lyase activation upon different Aβ concentrations
title_short Distinct dual roles of p-Tyr42 RhoA GTPase in tau phosphorylation and ATP citrate lyase activation upon different Aβ concentrations
title_sort distinct dual roles of p-tyr42 rhoa gtpase in tau phosphorylation and atp citrate lyase activation upon different aβ concentrations
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7264465/
https://www.ncbi.nlm.nih.gov/pubmed/32046944
http://dx.doi.org/10.1016/j.redox.2020.101446
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