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WWOX Phosphorylation, Signaling, and Role in Neurodegeneration

Homozygous null mutation of tumor suppressor WWOX/Wwox gene leads to severe neural diseases, metabolic disorders and early death in the newborns of humans, mice and rats. WWOX is frequently downregulated in the hippocampi of patients with Alzheimer’s disease (AD). In vitro analysis revealed that kno...

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Autores principales: Liu, Chan-Chuan, Ho, Pei-Chuan, Lee, I.-Ting, Chen, Yu-An, Chu, Chun-Hsien, Teng, Chih-Chuan, Wu, Sheng-Nan, Sze, Chun-I., Chiang, Ming-Fu, Chang, Nan-Shan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6104168/
https://www.ncbi.nlm.nih.gov/pubmed/30158849
http://dx.doi.org/10.3389/fnins.2018.00563
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author Liu, Chan-Chuan
Ho, Pei-Chuan
Lee, I.-Ting
Chen, Yu-An
Chu, Chun-Hsien
Teng, Chih-Chuan
Wu, Sheng-Nan
Sze, Chun-I.
Chiang, Ming-Fu
Chang, Nan-Shan
author_facet Liu, Chan-Chuan
Ho, Pei-Chuan
Lee, I.-Ting
Chen, Yu-An
Chu, Chun-Hsien
Teng, Chih-Chuan
Wu, Sheng-Nan
Sze, Chun-I.
Chiang, Ming-Fu
Chang, Nan-Shan
author_sort Liu, Chan-Chuan
collection PubMed
description Homozygous null mutation of tumor suppressor WWOX/Wwox gene leads to severe neural diseases, metabolic disorders and early death in the newborns of humans, mice and rats. WWOX is frequently downregulated in the hippocampi of patients with Alzheimer’s disease (AD). In vitro analysis revealed that knockdown of WWOX protein in neuroblastoma cells results in aggregation of TRAPPC6AΔ, TIAF1, amyloid β, and Tau in a sequential manner. Indeed, TRAPPC6AΔ and TIAF1, but not tau and amyloid β, aggregates are present in the brains of healthy mid-aged individuals. It is reasonable to assume that very slow activation of a protein aggregation cascade starts sequentially with TRAPPC6AΔ and TIAF1 aggregation at mid-ages, then caspase activation and APP de-phosphorylation and degradation, and final accumulation of amyloid β and Tau aggregates in the brains at greater than 70 years old. WWOX binds Tau-hyperphosphorylating enzymes (e.g., GSK-3β) and blocks their functions, thereby supporting neuronal survival and differentiation. As a neuronal protective hormone, 17β-estradiol (E2) binds WWOX at an NSYK motif in the C-terminal SDR (short-chain alcohol dehydrogenase/reductase) domain. In this review, we discuss how WWOX and E2 block protein aggregation during neurodegeneration, and how a 31-amino-acid zinc finger-like Zfra peptide restores memory loss in mice.
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spelling pubmed-61041682018-08-29 WWOX Phosphorylation, Signaling, and Role in Neurodegeneration Liu, Chan-Chuan Ho, Pei-Chuan Lee, I.-Ting Chen, Yu-An Chu, Chun-Hsien Teng, Chih-Chuan Wu, Sheng-Nan Sze, Chun-I. Chiang, Ming-Fu Chang, Nan-Shan Front Neurosci Neuroscience Homozygous null mutation of tumor suppressor WWOX/Wwox gene leads to severe neural diseases, metabolic disorders and early death in the newborns of humans, mice and rats. WWOX is frequently downregulated in the hippocampi of patients with Alzheimer’s disease (AD). In vitro analysis revealed that knockdown of WWOX protein in neuroblastoma cells results in aggregation of TRAPPC6AΔ, TIAF1, amyloid β, and Tau in a sequential manner. Indeed, TRAPPC6AΔ and TIAF1, but not tau and amyloid β, aggregates are present in the brains of healthy mid-aged individuals. It is reasonable to assume that very slow activation of a protein aggregation cascade starts sequentially with TRAPPC6AΔ and TIAF1 aggregation at mid-ages, then caspase activation and APP de-phosphorylation and degradation, and final accumulation of amyloid β and Tau aggregates in the brains at greater than 70 years old. WWOX binds Tau-hyperphosphorylating enzymes (e.g., GSK-3β) and blocks their functions, thereby supporting neuronal survival and differentiation. As a neuronal protective hormone, 17β-estradiol (E2) binds WWOX at an NSYK motif in the C-terminal SDR (short-chain alcohol dehydrogenase/reductase) domain. In this review, we discuss how WWOX and E2 block protein aggregation during neurodegeneration, and how a 31-amino-acid zinc finger-like Zfra peptide restores memory loss in mice. Frontiers Media S.A. 2018-08-15 /pmc/articles/PMC6104168/ /pubmed/30158849 http://dx.doi.org/10.3389/fnins.2018.00563 Text en Copyright © 2018 Liu, Ho, Lee, Chen, Chu, Teng, Wu, Sze, Chiang and Chang. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Neuroscience
Liu, Chan-Chuan
Ho, Pei-Chuan
Lee, I.-Ting
Chen, Yu-An
Chu, Chun-Hsien
Teng, Chih-Chuan
Wu, Sheng-Nan
Sze, Chun-I.
Chiang, Ming-Fu
Chang, Nan-Shan
WWOX Phosphorylation, Signaling, and Role in Neurodegeneration
title WWOX Phosphorylation, Signaling, and Role in Neurodegeneration
title_full WWOX Phosphorylation, Signaling, and Role in Neurodegeneration
title_fullStr WWOX Phosphorylation, Signaling, and Role in Neurodegeneration
title_full_unstemmed WWOX Phosphorylation, Signaling, and Role in Neurodegeneration
title_short WWOX Phosphorylation, Signaling, and Role in Neurodegeneration
title_sort wwox phosphorylation, signaling, and role in neurodegeneration
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6104168/
https://www.ncbi.nlm.nih.gov/pubmed/30158849
http://dx.doi.org/10.3389/fnins.2018.00563
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