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Alzheimer’s disease brain-derived extracellular vesicles spread tau pathology in interneurons

Extracellular vesicles are highly transmissible and play critical roles in the propagation of tau pathology, although the underlying mechanism remains elusive. Here, for the first time, we comprehensively characterized the physicochemical structure and pathogenic function of human brain-derived extr...

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Autores principales: Ruan, Zhi, Pathak, Dhruba, Venkatesan Kalavai, Srinidhi, Yoshii-Kitahara, Asuka, Muraoka, Satoshi, Bhatt, Nemil, Takamatsu-Yukawa, Kayo, Hu, Jianqiao, Wang, Yuzhi, Hersh, Samuel, Ericsson, Maria, Gorantla, Santhi, Gendelman, Howard E, Kayed, Rakez, Ikezu, Seiko, Luebke, Jennifer I, Ikezu, Tsuneya
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7880668/
https://www.ncbi.nlm.nih.gov/pubmed/33246331
http://dx.doi.org/10.1093/brain/awaa376
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author Ruan, Zhi
Pathak, Dhruba
Venkatesan Kalavai, Srinidhi
Yoshii-Kitahara, Asuka
Muraoka, Satoshi
Bhatt, Nemil
Takamatsu-Yukawa, Kayo
Hu, Jianqiao
Wang, Yuzhi
Hersh, Samuel
Ericsson, Maria
Gorantla, Santhi
Gendelman, Howard E
Kayed, Rakez
Ikezu, Seiko
Luebke, Jennifer I
Ikezu, Tsuneya
author_facet Ruan, Zhi
Pathak, Dhruba
Venkatesan Kalavai, Srinidhi
Yoshii-Kitahara, Asuka
Muraoka, Satoshi
Bhatt, Nemil
Takamatsu-Yukawa, Kayo
Hu, Jianqiao
Wang, Yuzhi
Hersh, Samuel
Ericsson, Maria
Gorantla, Santhi
Gendelman, Howard E
Kayed, Rakez
Ikezu, Seiko
Luebke, Jennifer I
Ikezu, Tsuneya
author_sort Ruan, Zhi
collection PubMed
description Extracellular vesicles are highly transmissible and play critical roles in the propagation of tau pathology, although the underlying mechanism remains elusive. Here, for the first time, we comprehensively characterized the physicochemical structure and pathogenic function of human brain-derived extracellular vesicles isolated from Alzheimer’s disease, prodromal Alzheimer’s disease, and non-demented control cases. Alzheimer’s disease extracellular vesicles were significantly enriched in epitope-specific tau oligomers in comparison to prodromal Alzheimer’s disease or control extracellular vesicles as determined by dot blot and atomic force microscopy. Alzheimer’s disease extracellular vesicles were more efficiently internalized by murine cortical neurons, as well as more efficient in transferring and misfolding tau, than prodromal Alzheimer’s disease and control extracellular vesicles in vitro. Strikingly, the inoculation of Alzheimer’s disease or prodromal Alzheimer’s disease extracellular vesicles containing only 300 pg of tau into the outer molecular layer of the dentate gyrus of 18-month-old C57BL/6 mice resulted in the accumulation of abnormally phosphorylated tau throughout the hippocampus by 4.5 months, whereas inoculation of an equal amount of tau from control extracellular vesicles, isolated tau oligomers, or fibrils from the same Alzheimer’s disease donor showed little tau pathology. Furthermore, Alzheimer’s disease extracellular vesicles induced misfolding of endogenous tau in both oligomeric and sarkosyl-insoluble forms in the hippocampal region. Unexpectedly, phosphorylated tau was primarily accumulated in glutamic acid decarboxylase 67 (GAD67) GABAergic interneurons and, to a lesser extent, glutamate receptor 2/3-positive excitatory mossy cells, showing preferential extracellular vesicle-mediated GABAergic interneuronal tau propagation. Whole-cell patch clamp recordings of CA1 pyramidal cells showed significant reduction in the amplitude of spontaneous inhibitory post-synaptic currents. This was accompanied by reductions in c-fos(+) GAD67(+) neurons and GAD67(+) neuronal puncta surrounding pyramidal neurons in the CA1 region, confirming reduced GABAergic transmission in this region. Our study posits a novel mechanism for the spread of tau in hippocampal GABAergic interneurons via brain-derived extracellular vesicles and their subsequent neuronal dysfunction.
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spelling pubmed-78806682021-02-17 Alzheimer’s disease brain-derived extracellular vesicles spread tau pathology in interneurons Ruan, Zhi Pathak, Dhruba Venkatesan Kalavai, Srinidhi Yoshii-Kitahara, Asuka Muraoka, Satoshi Bhatt, Nemil Takamatsu-Yukawa, Kayo Hu, Jianqiao Wang, Yuzhi Hersh, Samuel Ericsson, Maria Gorantla, Santhi Gendelman, Howard E Kayed, Rakez Ikezu, Seiko Luebke, Jennifer I Ikezu, Tsuneya Brain Original Articles Extracellular vesicles are highly transmissible and play critical roles in the propagation of tau pathology, although the underlying mechanism remains elusive. Here, for the first time, we comprehensively characterized the physicochemical structure and pathogenic function of human brain-derived extracellular vesicles isolated from Alzheimer’s disease, prodromal Alzheimer’s disease, and non-demented control cases. Alzheimer’s disease extracellular vesicles were significantly enriched in epitope-specific tau oligomers in comparison to prodromal Alzheimer’s disease or control extracellular vesicles as determined by dot blot and atomic force microscopy. Alzheimer’s disease extracellular vesicles were more efficiently internalized by murine cortical neurons, as well as more efficient in transferring and misfolding tau, than prodromal Alzheimer’s disease and control extracellular vesicles in vitro. Strikingly, the inoculation of Alzheimer’s disease or prodromal Alzheimer’s disease extracellular vesicles containing only 300 pg of tau into the outer molecular layer of the dentate gyrus of 18-month-old C57BL/6 mice resulted in the accumulation of abnormally phosphorylated tau throughout the hippocampus by 4.5 months, whereas inoculation of an equal amount of tau from control extracellular vesicles, isolated tau oligomers, or fibrils from the same Alzheimer’s disease donor showed little tau pathology. Furthermore, Alzheimer’s disease extracellular vesicles induced misfolding of endogenous tau in both oligomeric and sarkosyl-insoluble forms in the hippocampal region. Unexpectedly, phosphorylated tau was primarily accumulated in glutamic acid decarboxylase 67 (GAD67) GABAergic interneurons and, to a lesser extent, glutamate receptor 2/3-positive excitatory mossy cells, showing preferential extracellular vesicle-mediated GABAergic interneuronal tau propagation. Whole-cell patch clamp recordings of CA1 pyramidal cells showed significant reduction in the amplitude of spontaneous inhibitory post-synaptic currents. This was accompanied by reductions in c-fos(+) GAD67(+) neurons and GAD67(+) neuronal puncta surrounding pyramidal neurons in the CA1 region, confirming reduced GABAergic transmission in this region. Our study posits a novel mechanism for the spread of tau in hippocampal GABAergic interneurons via brain-derived extracellular vesicles and their subsequent neuronal dysfunction. Oxford University Press 2020-11-27 /pmc/articles/PMC7880668/ /pubmed/33246331 http://dx.doi.org/10.1093/brain/awaa376 Text en © The Author(s) (2020). Published by Oxford University Press on behalf of the Guarantors of Brain. https://creativecommons.org/licenses/by-nc/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/ (https://creativecommons.org/licenses/by-nc/4.0/) ), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Original Articles
Ruan, Zhi
Pathak, Dhruba
Venkatesan Kalavai, Srinidhi
Yoshii-Kitahara, Asuka
Muraoka, Satoshi
Bhatt, Nemil
Takamatsu-Yukawa, Kayo
Hu, Jianqiao
Wang, Yuzhi
Hersh, Samuel
Ericsson, Maria
Gorantla, Santhi
Gendelman, Howard E
Kayed, Rakez
Ikezu, Seiko
Luebke, Jennifer I
Ikezu, Tsuneya
Alzheimer’s disease brain-derived extracellular vesicles spread tau pathology in interneurons
title Alzheimer’s disease brain-derived extracellular vesicles spread tau pathology in interneurons
title_full Alzheimer’s disease brain-derived extracellular vesicles spread tau pathology in interneurons
title_fullStr Alzheimer’s disease brain-derived extracellular vesicles spread tau pathology in interneurons
title_full_unstemmed Alzheimer’s disease brain-derived extracellular vesicles spread tau pathology in interneurons
title_short Alzheimer’s disease brain-derived extracellular vesicles spread tau pathology in interneurons
title_sort alzheimer’s disease brain-derived extracellular vesicles spread tau pathology in interneurons
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7880668/
https://www.ncbi.nlm.nih.gov/pubmed/33246331
http://dx.doi.org/10.1093/brain/awaa376
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