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Neuron-specific methylome analysis reveals epigenetic regulation and tau-related dysfunction of BRCA1 in Alzheimer’s disease

Alzheimer’s disease (AD) is a chronic neurodegenerative disease characterized by pathology of accumulated amyloid β (Aβ) and phosphorylated tau proteins in the brain. Postmortem degradation and cellular complexity within the brain have limited approaches to molecularly define the causal relationship...

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Autores principales: Mano, Tatsuo, Nagata, Kenichi, Nonaka, Takashi, Tarutani, Airi, Imamura, Tomohiro, Hashimoto, Tadafumi, Bannai, Taro, Koshi-Mano, Kagari, Tsuchida, Takeyuki, Ohtomo, Ryo, Takahashi-Fujigasaki, Junko, Yamashita, Satoshi, Ohyagi, Yasumasa, Yamasaki, Ryo, Tsuji, Shoji, Tamaoka, Akira, Ikeuchi, Takeshi, Saido, Takaomi C., Iwatsubo, Takeshi, Ushijima, Toshikazu, Murayama, Shigeo, Hasegawa, Masato, Iwata, Atsushi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5692545/
https://www.ncbi.nlm.nih.gov/pubmed/29042514
http://dx.doi.org/10.1073/pnas.1707151114
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author Mano, Tatsuo
Nagata, Kenichi
Nonaka, Takashi
Tarutani, Airi
Imamura, Tomohiro
Hashimoto, Tadafumi
Bannai, Taro
Koshi-Mano, Kagari
Tsuchida, Takeyuki
Ohtomo, Ryo
Takahashi-Fujigasaki, Junko
Yamashita, Satoshi
Ohyagi, Yasumasa
Yamasaki, Ryo
Tsuji, Shoji
Tamaoka, Akira
Ikeuchi, Takeshi
Saido, Takaomi C.
Iwatsubo, Takeshi
Ushijima, Toshikazu
Murayama, Shigeo
Hasegawa, Masato
Iwata, Atsushi
author_facet Mano, Tatsuo
Nagata, Kenichi
Nonaka, Takashi
Tarutani, Airi
Imamura, Tomohiro
Hashimoto, Tadafumi
Bannai, Taro
Koshi-Mano, Kagari
Tsuchida, Takeyuki
Ohtomo, Ryo
Takahashi-Fujigasaki, Junko
Yamashita, Satoshi
Ohyagi, Yasumasa
Yamasaki, Ryo
Tsuji, Shoji
Tamaoka, Akira
Ikeuchi, Takeshi
Saido, Takaomi C.
Iwatsubo, Takeshi
Ushijima, Toshikazu
Murayama, Shigeo
Hasegawa, Masato
Iwata, Atsushi
author_sort Mano, Tatsuo
collection PubMed
description Alzheimer’s disease (AD) is a chronic neurodegenerative disease characterized by pathology of accumulated amyloid β (Aβ) and phosphorylated tau proteins in the brain. Postmortem degradation and cellular complexity within the brain have limited approaches to molecularly define the causal relationship between pathological features and neuronal dysfunction in AD. To overcome these limitations, we analyzed the neuron-specific DNA methylome of postmortem brain samples from AD patients, which allowed differentially hypomethylated region of the BRCA1 promoter to be identified. Expression of BRCA1 was significantly up-regulated in AD brains, consistent with its hypomethylation. BRCA1 protein levels were also elevated in response to DNA damage induced by Aβ. BRCA1 became mislocalized to the cytoplasm and highly insoluble in a tau-dependent manner, resulting in DNA fragmentation in both in vitro cellular and in vivo mouse models. BRCA1 dysfunction under Aβ burden is consistent with concomitant deterioration of genomic integrity and synaptic plasticity. The Brca1 promoter region of AD model mice brain was similarly hypomethylated, indicating an epigenetic mechanism underlying BRCA1 regulation in AD. Our results suggest deterioration of DNA integrity as a central contributing factor in AD pathogenesis. Moreover, these data demonstrate the technical feasibility of using neuron-specific DNA methylome analysis to facilitate discovery of etiological candidates in sporadic neurodegenerative diseases.
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spelling pubmed-56925452017-11-20 Neuron-specific methylome analysis reveals epigenetic regulation and tau-related dysfunction of BRCA1 in Alzheimer’s disease Mano, Tatsuo Nagata, Kenichi Nonaka, Takashi Tarutani, Airi Imamura, Tomohiro Hashimoto, Tadafumi Bannai, Taro Koshi-Mano, Kagari Tsuchida, Takeyuki Ohtomo, Ryo Takahashi-Fujigasaki, Junko Yamashita, Satoshi Ohyagi, Yasumasa Yamasaki, Ryo Tsuji, Shoji Tamaoka, Akira Ikeuchi, Takeshi Saido, Takaomi C. Iwatsubo, Takeshi Ushijima, Toshikazu Murayama, Shigeo Hasegawa, Masato Iwata, Atsushi Proc Natl Acad Sci U S A PNAS Plus Alzheimer’s disease (AD) is a chronic neurodegenerative disease characterized by pathology of accumulated amyloid β (Aβ) and phosphorylated tau proteins in the brain. Postmortem degradation and cellular complexity within the brain have limited approaches to molecularly define the causal relationship between pathological features and neuronal dysfunction in AD. To overcome these limitations, we analyzed the neuron-specific DNA methylome of postmortem brain samples from AD patients, which allowed differentially hypomethylated region of the BRCA1 promoter to be identified. Expression of BRCA1 was significantly up-regulated in AD brains, consistent with its hypomethylation. BRCA1 protein levels were also elevated in response to DNA damage induced by Aβ. BRCA1 became mislocalized to the cytoplasm and highly insoluble in a tau-dependent manner, resulting in DNA fragmentation in both in vitro cellular and in vivo mouse models. BRCA1 dysfunction under Aβ burden is consistent with concomitant deterioration of genomic integrity and synaptic plasticity. The Brca1 promoter region of AD model mice brain was similarly hypomethylated, indicating an epigenetic mechanism underlying BRCA1 regulation in AD. Our results suggest deterioration of DNA integrity as a central contributing factor in AD pathogenesis. Moreover, these data demonstrate the technical feasibility of using neuron-specific DNA methylome analysis to facilitate discovery of etiological candidates in sporadic neurodegenerative diseases. National Academy of Sciences 2017-11-07 2017-10-17 /pmc/articles/PMC5692545/ /pubmed/29042514 http://dx.doi.org/10.1073/pnas.1707151114 Text en Copyright © 2017 the Author(s). Published by PNAS. This is an open access article distributed under the PNAS license (http://www.pnas.org/site/aboutpnas/licenses.xhtml) .http://www.pnas.org/site/aboutpnas/licenses.xhtml
spellingShingle PNAS Plus
Mano, Tatsuo
Nagata, Kenichi
Nonaka, Takashi
Tarutani, Airi
Imamura, Tomohiro
Hashimoto, Tadafumi
Bannai, Taro
Koshi-Mano, Kagari
Tsuchida, Takeyuki
Ohtomo, Ryo
Takahashi-Fujigasaki, Junko
Yamashita, Satoshi
Ohyagi, Yasumasa
Yamasaki, Ryo
Tsuji, Shoji
Tamaoka, Akira
Ikeuchi, Takeshi
Saido, Takaomi C.
Iwatsubo, Takeshi
Ushijima, Toshikazu
Murayama, Shigeo
Hasegawa, Masato
Iwata, Atsushi
Neuron-specific methylome analysis reveals epigenetic regulation and tau-related dysfunction of BRCA1 in Alzheimer’s disease
title Neuron-specific methylome analysis reveals epigenetic regulation and tau-related dysfunction of BRCA1 in Alzheimer’s disease
title_full Neuron-specific methylome analysis reveals epigenetic regulation and tau-related dysfunction of BRCA1 in Alzheimer’s disease
title_fullStr Neuron-specific methylome analysis reveals epigenetic regulation and tau-related dysfunction of BRCA1 in Alzheimer’s disease
title_full_unstemmed Neuron-specific methylome analysis reveals epigenetic regulation and tau-related dysfunction of BRCA1 in Alzheimer’s disease
title_short Neuron-specific methylome analysis reveals epigenetic regulation and tau-related dysfunction of BRCA1 in Alzheimer’s disease
title_sort neuron-specific methylome analysis reveals epigenetic regulation and tau-related dysfunction of brca1 in alzheimer’s disease
topic PNAS Plus
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5692545/
https://www.ncbi.nlm.nih.gov/pubmed/29042514
http://dx.doi.org/10.1073/pnas.1707151114
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