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Intracellular Trafficking of the Amyloid β-Protein Precursor (APP) Regulated by Novel Function of X11-Like

BACKGROUND: Amyloid β (Aβ), a causative peptide of Alzheimer's disease, is generated by intracellular metabolism of amyloid β-protein precursor (APP). In general, mature APP (mAPP, N- and O-glycosylated form) is subject to successive cleavages by α- or β-, and γ-secretases in the late protein s...

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Autores principales: Saito, Yuhki, Akiyama, Mayu, Araki, Yoichi, Sumioka, Akio, Shiono, Maki, Taru, Hidenori, Nakaya, Tadashi, Yamamoto, Tohru, Suzuki, Toshiharu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3139598/
https://www.ncbi.nlm.nih.gov/pubmed/21818298
http://dx.doi.org/10.1371/journal.pone.0022108
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author Saito, Yuhki
Akiyama, Mayu
Araki, Yoichi
Sumioka, Akio
Shiono, Maki
Taru, Hidenori
Nakaya, Tadashi
Yamamoto, Tohru
Suzuki, Toshiharu
author_facet Saito, Yuhki
Akiyama, Mayu
Araki, Yoichi
Sumioka, Akio
Shiono, Maki
Taru, Hidenori
Nakaya, Tadashi
Yamamoto, Tohru
Suzuki, Toshiharu
author_sort Saito, Yuhki
collection PubMed
description BACKGROUND: Amyloid β (Aβ), a causative peptide of Alzheimer's disease, is generated by intracellular metabolism of amyloid β-protein precursor (APP). In general, mature APP (mAPP, N- and O-glycosylated form) is subject to successive cleavages by α- or β-, and γ-secretases in the late protein secretory pathway and/or at plasma membrane, while immature APP (imAPP, N-glycosylated form) locates in the early secretory pathway such as endoplasmic reticulum or cis-Golgi, in which imAPP is not subject to metabolic cleavages. X11-like (X11L) is a neural adaptor protein composed of a phosphotyrosine-binding (PTB) and two C-terminal PDZ domains. X11L suppresses amyloidogenic cleavage of mAPP by direct binding of X11L through its PTB domain, thereby generation of Aβ lowers. X11L expresses another function in the regulation of intracellular APP trafficking. METHODOLOGY: In order to analyze novel function of X11L in intracellular trafficking of APP, we performed a functional dissection of X11L. Using cells expressing various domain-deleted X11L mutants, intracellular APP trafficking was examined along with analysis of APP metabolism including maturation (O-glycosylation), processing and localization of APP. CONCLUSIONS: X11L accumulates imAPP into the early secretory pathway by mediation of its C-terminal PDZ domains, without being bound to imAPP directly. With this novel function, X11L suppresses overall APP metabolism and results in further suppression of Aβ generation. Interestingly some of the accumulated imAPP in the early secretory pathway are likely to appear on plasma membrane by unidentified mechanism. Trafficking of imAPP to plasma membrane is observed in other X11 family proteins, X11 and X11L2, but not in other APP-binding partners such as FE65 and JIP1. It is herein clear that respective functional domains of X11L regulate APP metabolism at multiple steps in intracellular protein secretory pathways.
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spelling pubmed-31395982011-08-04 Intracellular Trafficking of the Amyloid β-Protein Precursor (APP) Regulated by Novel Function of X11-Like Saito, Yuhki Akiyama, Mayu Araki, Yoichi Sumioka, Akio Shiono, Maki Taru, Hidenori Nakaya, Tadashi Yamamoto, Tohru Suzuki, Toshiharu PLoS One Research Article BACKGROUND: Amyloid β (Aβ), a causative peptide of Alzheimer's disease, is generated by intracellular metabolism of amyloid β-protein precursor (APP). In general, mature APP (mAPP, N- and O-glycosylated form) is subject to successive cleavages by α- or β-, and γ-secretases in the late protein secretory pathway and/or at plasma membrane, while immature APP (imAPP, N-glycosylated form) locates in the early secretory pathway such as endoplasmic reticulum or cis-Golgi, in which imAPP is not subject to metabolic cleavages. X11-like (X11L) is a neural adaptor protein composed of a phosphotyrosine-binding (PTB) and two C-terminal PDZ domains. X11L suppresses amyloidogenic cleavage of mAPP by direct binding of X11L through its PTB domain, thereby generation of Aβ lowers. X11L expresses another function in the regulation of intracellular APP trafficking. METHODOLOGY: In order to analyze novel function of X11L in intracellular trafficking of APP, we performed a functional dissection of X11L. Using cells expressing various domain-deleted X11L mutants, intracellular APP trafficking was examined along with analysis of APP metabolism including maturation (O-glycosylation), processing and localization of APP. CONCLUSIONS: X11L accumulates imAPP into the early secretory pathway by mediation of its C-terminal PDZ domains, without being bound to imAPP directly. With this novel function, X11L suppresses overall APP metabolism and results in further suppression of Aβ generation. Interestingly some of the accumulated imAPP in the early secretory pathway are likely to appear on plasma membrane by unidentified mechanism. Trafficking of imAPP to plasma membrane is observed in other X11 family proteins, X11 and X11L2, but not in other APP-binding partners such as FE65 and JIP1. It is herein clear that respective functional domains of X11L regulate APP metabolism at multiple steps in intracellular protein secretory pathways. Public Library of Science 2011-07-19 /pmc/articles/PMC3139598/ /pubmed/21818298 http://dx.doi.org/10.1371/journal.pone.0022108 Text en Saito et al. http://creativecommons.org/licenses/by/4.0/ 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 the original author and source are properly credited.
spellingShingle Research Article
Saito, Yuhki
Akiyama, Mayu
Araki, Yoichi
Sumioka, Akio
Shiono, Maki
Taru, Hidenori
Nakaya, Tadashi
Yamamoto, Tohru
Suzuki, Toshiharu
Intracellular Trafficking of the Amyloid β-Protein Precursor (APP) Regulated by Novel Function of X11-Like
title Intracellular Trafficking of the Amyloid β-Protein Precursor (APP) Regulated by Novel Function of X11-Like
title_full Intracellular Trafficking of the Amyloid β-Protein Precursor (APP) Regulated by Novel Function of X11-Like
title_fullStr Intracellular Trafficking of the Amyloid β-Protein Precursor (APP) Regulated by Novel Function of X11-Like
title_full_unstemmed Intracellular Trafficking of the Amyloid β-Protein Precursor (APP) Regulated by Novel Function of X11-Like
title_short Intracellular Trafficking of the Amyloid β-Protein Precursor (APP) Regulated by Novel Function of X11-Like
title_sort intracellular trafficking of the amyloid β-protein precursor (app) regulated by novel function of x11-like
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3139598/
https://www.ncbi.nlm.nih.gov/pubmed/21818298
http://dx.doi.org/10.1371/journal.pone.0022108
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