Mitochondrial ubiquitin ligase alleviates Alzheimer’s disease pathology via blocking the toxic amyloid-β oligomer generation

Takeda et al. investigate the role of mitochondrial ubiquitin ligase (MITOL) in Alzheimer’s disease progression. They demonstrate that MITOL has a direct effect on mitochondrial dynamics and functioning and its ablation can enhance the seeding effect of Aβ-plaques, leading to cognitive decline in th...

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Main Authors: Keisuke Takeda, Aoi Uda, Mikihiro Mitsubori, Shun Nagashima, Hiroko Iwasaki, Naoki Ito, Isshin Shiiba, Satoshi Ishido, Masaaki Matsuoka, Ryoko Inatome, Shigeru Yanagi
Format: Article
Language:English
Published: Nature Portfolio 2021-02-01
Series:Communications Biology
Online Access:https://doi.org/10.1038/s42003-021-01720-2
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author Keisuke Takeda
Aoi Uda
Mikihiro Mitsubori
Shun Nagashima
Hiroko Iwasaki
Naoki Ito
Isshin Shiiba
Satoshi Ishido
Masaaki Matsuoka
Ryoko Inatome
Shigeru Yanagi
author_facet Keisuke Takeda
Aoi Uda
Mikihiro Mitsubori
Shun Nagashima
Hiroko Iwasaki
Naoki Ito
Isshin Shiiba
Satoshi Ishido
Masaaki Matsuoka
Ryoko Inatome
Shigeru Yanagi
author_sort Keisuke Takeda
collection DOAJ
description Takeda et al. investigate the role of mitochondrial ubiquitin ligase (MITOL) in Alzheimer’s disease progression. They demonstrate that MITOL has a direct effect on mitochondrial dynamics and functioning and its ablation can enhance the seeding effect of Aβ-plaques, leading to cognitive decline in the transgenic mice model of Alzheimer’s disease.
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spelling doaj.art-a70a607b38ad4df6980d72a5853d8a142022-12-21T22:55:00ZengNature PortfolioCommunications Biology2399-36422021-02-014111310.1038/s42003-021-01720-2Mitochondrial ubiquitin ligase alleviates Alzheimer’s disease pathology via blocking the toxic amyloid-β oligomer generationKeisuke Takeda0Aoi Uda1Mikihiro Mitsubori2Shun Nagashima3Hiroko Iwasaki4Naoki Ito5Isshin Shiiba6Satoshi Ishido7Masaaki Matsuoka8Ryoko Inatome9Shigeru Yanagi10Laboratory of Molecular Biochemistry, School of Life Sciences, Tokyo University of Pharmacy and Life SciencesLaboratory of Molecular Biochemistry, School of Life Sciences, Tokyo University of Pharmacy and Life SciencesLaboratory of Molecular Biochemistry, School of Life Sciences, Tokyo University of Pharmacy and Life SciencesLaboratory of Molecular Biochemistry, School of Life Sciences, Tokyo University of Pharmacy and Life SciencesLaboratory of Molecular Biochemistry, School of Life Sciences, Tokyo University of Pharmacy and Life SciencesLaboratory of Molecular Biochemistry, School of Life Sciences, Tokyo University of Pharmacy and Life SciencesLaboratory of Molecular Biochemistry, School of Life Sciences, Tokyo University of Pharmacy and Life SciencesDepartment of Microbiology, Hyogo College of MedicineDepartment of Pharmacology, Tokyo Medical UniversityLaboratory of Molecular Biochemistry, School of Life Sciences, Tokyo University of Pharmacy and Life SciencesLaboratory of Molecular Biochemistry, School of Life Sciences, Tokyo University of Pharmacy and Life SciencesTakeda et al. investigate the role of mitochondrial ubiquitin ligase (MITOL) in Alzheimer’s disease progression. They demonstrate that MITOL has a direct effect on mitochondrial dynamics and functioning and its ablation can enhance the seeding effect of Aβ-plaques, leading to cognitive decline in the transgenic mice model of Alzheimer’s disease.https://doi.org/10.1038/s42003-021-01720-2
spellingShingle Keisuke Takeda
Aoi Uda
Mikihiro Mitsubori
Shun Nagashima
Hiroko Iwasaki
Naoki Ito
Isshin Shiiba
Satoshi Ishido
Masaaki Matsuoka
Ryoko Inatome
Shigeru Yanagi
Mitochondrial ubiquitin ligase alleviates Alzheimer’s disease pathology via blocking the toxic amyloid-β oligomer generation
Communications Biology
title Mitochondrial ubiquitin ligase alleviates Alzheimer’s disease pathology via blocking the toxic amyloid-β oligomer generation
title_full Mitochondrial ubiquitin ligase alleviates Alzheimer’s disease pathology via blocking the toxic amyloid-β oligomer generation
title_fullStr Mitochondrial ubiquitin ligase alleviates Alzheimer’s disease pathology via blocking the toxic amyloid-β oligomer generation
title_full_unstemmed Mitochondrial ubiquitin ligase alleviates Alzheimer’s disease pathology via blocking the toxic amyloid-β oligomer generation
title_short Mitochondrial ubiquitin ligase alleviates Alzheimer’s disease pathology via blocking the toxic amyloid-β oligomer generation
title_sort mitochondrial ubiquitin ligase alleviates alzheimer s disease pathology via blocking the toxic amyloid β oligomer generation
url https://doi.org/10.1038/s42003-021-01720-2
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