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ESCRT-0 dysfunction compromises autophagic degradation of protein aggregates and facilitates ER stress-mediated neurodegeneration via apoptotic and necroptotic pathways

Endosomal sorting required for transport (ESCRT) complexes orchestrate endo-lysosomal sorting of ubiquitinated proteins, multivesicular body formation and autophagic degradation. Defects in the ESCRT pathway have been implicated in many neurodegenerative diseases, but the underlying molecular mechan...

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Autores principales: Oshima, Ryuji, Hasegawa, Takafumi, Tamai, Keiichi, Sugeno, Naoto, Yoshida, Shun, Kobayashi, Junpei, Kikuchi, Akio, Baba, Toru, Futatsugi, Akira, Sato, Ikuro, Satoh, Kennichi, Takeda, Atsushi, Aoki, Masashi, Tanaka, Nobuyuki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4845015/
https://www.ncbi.nlm.nih.gov/pubmed/27112194
http://dx.doi.org/10.1038/srep24997
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author Oshima, Ryuji
Hasegawa, Takafumi
Tamai, Keiichi
Sugeno, Naoto
Yoshida, Shun
Kobayashi, Junpei
Kikuchi, Akio
Baba, Toru
Futatsugi, Akira
Sato, Ikuro
Satoh, Kennichi
Takeda, Atsushi
Aoki, Masashi
Tanaka, Nobuyuki
author_facet Oshima, Ryuji
Hasegawa, Takafumi
Tamai, Keiichi
Sugeno, Naoto
Yoshida, Shun
Kobayashi, Junpei
Kikuchi, Akio
Baba, Toru
Futatsugi, Akira
Sato, Ikuro
Satoh, Kennichi
Takeda, Atsushi
Aoki, Masashi
Tanaka, Nobuyuki
author_sort Oshima, Ryuji
collection PubMed
description Endosomal sorting required for transport (ESCRT) complexes orchestrate endo-lysosomal sorting of ubiquitinated proteins, multivesicular body formation and autophagic degradation. Defects in the ESCRT pathway have been implicated in many neurodegenerative diseases, but the underlying molecular mechanisms that link them to neurodegeneration remain unknown. In this study, we showed that forebrain-specific ablation of ESCRT-0/Hrs induced marked hippocampal neuronal cell loss accompanied by the accumulation of ubiquitinated proteins, including α-synuclein, TDP-43 and huntingtin as well as the autophagic substrate SQSTM1/p62. Consistent with this, silencing of Hrs in cultured cells not only led to α-synuclein and TDP-43 accumulation in addition to impaired autophagic flux but also suppressed cell viability through the induction of ER stress followed by the activation of JNK and RIPK1, a key regulator of necroptosis. Moreover, necrostatin-1, a specific inhibitor of RIPK1, and pan-caspase inhibitors partially reduced the neurotoxicity in the Hrs-silenced cells. Altogether, these findings suggest that the disruption of ESCRT-0/Hrs in the nervous system compromises autophagic/lysosomal degradation of neurodegenerative disease-related proteins, which thereby triggers ER stress-mediated apoptotic and necroptotic cell death.
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spelling pubmed-48450152016-04-29 ESCRT-0 dysfunction compromises autophagic degradation of protein aggregates and facilitates ER stress-mediated neurodegeneration via apoptotic and necroptotic pathways Oshima, Ryuji Hasegawa, Takafumi Tamai, Keiichi Sugeno, Naoto Yoshida, Shun Kobayashi, Junpei Kikuchi, Akio Baba, Toru Futatsugi, Akira Sato, Ikuro Satoh, Kennichi Takeda, Atsushi Aoki, Masashi Tanaka, Nobuyuki Sci Rep Article Endosomal sorting required for transport (ESCRT) complexes orchestrate endo-lysosomal sorting of ubiquitinated proteins, multivesicular body formation and autophagic degradation. Defects in the ESCRT pathway have been implicated in many neurodegenerative diseases, but the underlying molecular mechanisms that link them to neurodegeneration remain unknown. In this study, we showed that forebrain-specific ablation of ESCRT-0/Hrs induced marked hippocampal neuronal cell loss accompanied by the accumulation of ubiquitinated proteins, including α-synuclein, TDP-43 and huntingtin as well as the autophagic substrate SQSTM1/p62. Consistent with this, silencing of Hrs in cultured cells not only led to α-synuclein and TDP-43 accumulation in addition to impaired autophagic flux but also suppressed cell viability through the induction of ER stress followed by the activation of JNK and RIPK1, a key regulator of necroptosis. Moreover, necrostatin-1, a specific inhibitor of RIPK1, and pan-caspase inhibitors partially reduced the neurotoxicity in the Hrs-silenced cells. Altogether, these findings suggest that the disruption of ESCRT-0/Hrs in the nervous system compromises autophagic/lysosomal degradation of neurodegenerative disease-related proteins, which thereby triggers ER stress-mediated apoptotic and necroptotic cell death. Nature Publishing Group 2016-04-26 /pmc/articles/PMC4845015/ /pubmed/27112194 http://dx.doi.org/10.1038/srep24997 Text en Copyright © 2016, Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Oshima, Ryuji
Hasegawa, Takafumi
Tamai, Keiichi
Sugeno, Naoto
Yoshida, Shun
Kobayashi, Junpei
Kikuchi, Akio
Baba, Toru
Futatsugi, Akira
Sato, Ikuro
Satoh, Kennichi
Takeda, Atsushi
Aoki, Masashi
Tanaka, Nobuyuki
ESCRT-0 dysfunction compromises autophagic degradation of protein aggregates and facilitates ER stress-mediated neurodegeneration via apoptotic and necroptotic pathways
title ESCRT-0 dysfunction compromises autophagic degradation of protein aggregates and facilitates ER stress-mediated neurodegeneration via apoptotic and necroptotic pathways
title_full ESCRT-0 dysfunction compromises autophagic degradation of protein aggregates and facilitates ER stress-mediated neurodegeneration via apoptotic and necroptotic pathways
title_fullStr ESCRT-0 dysfunction compromises autophagic degradation of protein aggregates and facilitates ER stress-mediated neurodegeneration via apoptotic and necroptotic pathways
title_full_unstemmed ESCRT-0 dysfunction compromises autophagic degradation of protein aggregates and facilitates ER stress-mediated neurodegeneration via apoptotic and necroptotic pathways
title_short ESCRT-0 dysfunction compromises autophagic degradation of protein aggregates and facilitates ER stress-mediated neurodegeneration via apoptotic and necroptotic pathways
title_sort escrt-0 dysfunction compromises autophagic degradation of protein aggregates and facilitates er stress-mediated neurodegeneration via apoptotic and necroptotic pathways
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4845015/
https://www.ncbi.nlm.nih.gov/pubmed/27112194
http://dx.doi.org/10.1038/srep24997
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