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Reduction of kinesin I heavy chain decreases tau hyperphosphorylation, aggregation, and memory impairment in Alzheimer’s disease and tauopathy models

Many neurodegenerative diseases, such as Alzheimer’s disease (AD) and frontotemporal dementia with Parkinsonism linked to chromosome 17, are characterized by tau pathology. Numerous motor proteins, many of which are involved in synaptic transmission, mediate transport in neurons. Dysfunction in moto...

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Autores principales: Selvarasu, Karthikeyan, Singh, Abhay Kumar, Iyaswamy, Ashok, Gopalkrishnashetty Sreenivasmurthy, Sravan, Krishnamoorthi, Senthilkumar, Bera, Amal Kanti, Huang, Jian-Dong, Durairajan, Siva Sundara Kumar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9641281/
https://www.ncbi.nlm.nih.gov/pubmed/36387285
http://dx.doi.org/10.3389/fmolb.2022.1050768
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author Selvarasu, Karthikeyan
Singh, Abhay Kumar
Iyaswamy, Ashok
Gopalkrishnashetty Sreenivasmurthy, Sravan
Krishnamoorthi, Senthilkumar
Bera, Amal Kanti
Huang, Jian-Dong
Durairajan, Siva Sundara Kumar
author_facet Selvarasu, Karthikeyan
Singh, Abhay Kumar
Iyaswamy, Ashok
Gopalkrishnashetty Sreenivasmurthy, Sravan
Krishnamoorthi, Senthilkumar
Bera, Amal Kanti
Huang, Jian-Dong
Durairajan, Siva Sundara Kumar
author_sort Selvarasu, Karthikeyan
collection PubMed
description Many neurodegenerative diseases, such as Alzheimer’s disease (AD) and frontotemporal dementia with Parkinsonism linked to chromosome 17, are characterized by tau pathology. Numerous motor proteins, many of which are involved in synaptic transmission, mediate transport in neurons. Dysfunction in motor protein-mediated neuronal transport mechanisms occurs in several neurodegenerative disorders but remains understudied in AD. Kinesins are the most important molecular motor proteins required for microtubule-dependent transport in neurons, and kinesin-1 is crucial for neuronal transport among all kinesins. Although kinesin-1 is required for normal neuronal functions, the dysfunction of these motor domains leading to neurodegenerative diseases is not fully understood. Here, we reported that the kinesin-I heavy chain (KIF5B), a key molecular motor protein, is involved in tau homeostasis in AD cells and animal models. We found that the levels of KIF5B in P301S tau mice are high. We also found that the knockdown and knockout (KO) of KIFf5B significantly decreased the tau stability, and overexpression of KIF5B in KIF5B-KO cells significantly increased the expression of phosphorylated and total tau levels. This suggested that KIF5B might prevent tau accumulation. By conducting experiments on P301S tau mice, we showed that partially reducing KIF5B levels can reduce hyperphosphorylation of the human tau protein, formation of insoluble aggregates, and memory impairment. Collectively, our results suggested that decreasing KIF5B levels is sufficient to prevent and/or slow down abnormal tau behavior of AD and other tauopathies.
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spelling pubmed-96412812022-11-15 Reduction of kinesin I heavy chain decreases tau hyperphosphorylation, aggregation, and memory impairment in Alzheimer’s disease and tauopathy models Selvarasu, Karthikeyan Singh, Abhay Kumar Iyaswamy, Ashok Gopalkrishnashetty Sreenivasmurthy, Sravan Krishnamoorthi, Senthilkumar Bera, Amal Kanti Huang, Jian-Dong Durairajan, Siva Sundara Kumar Front Mol Biosci Molecular Biosciences Many neurodegenerative diseases, such as Alzheimer’s disease (AD) and frontotemporal dementia with Parkinsonism linked to chromosome 17, are characterized by tau pathology. Numerous motor proteins, many of which are involved in synaptic transmission, mediate transport in neurons. Dysfunction in motor protein-mediated neuronal transport mechanisms occurs in several neurodegenerative disorders but remains understudied in AD. Kinesins are the most important molecular motor proteins required for microtubule-dependent transport in neurons, and kinesin-1 is crucial for neuronal transport among all kinesins. Although kinesin-1 is required for normal neuronal functions, the dysfunction of these motor domains leading to neurodegenerative diseases is not fully understood. Here, we reported that the kinesin-I heavy chain (KIF5B), a key molecular motor protein, is involved in tau homeostasis in AD cells and animal models. We found that the levels of KIF5B in P301S tau mice are high. We also found that the knockdown and knockout (KO) of KIFf5B significantly decreased the tau stability, and overexpression of KIF5B in KIF5B-KO cells significantly increased the expression of phosphorylated and total tau levels. This suggested that KIF5B might prevent tau accumulation. By conducting experiments on P301S tau mice, we showed that partially reducing KIF5B levels can reduce hyperphosphorylation of the human tau protein, formation of insoluble aggregates, and memory impairment. Collectively, our results suggested that decreasing KIF5B levels is sufficient to prevent and/or slow down abnormal tau behavior of AD and other tauopathies. Frontiers Media S.A. 2022-10-25 /pmc/articles/PMC9641281/ /pubmed/36387285 http://dx.doi.org/10.3389/fmolb.2022.1050768 Text en Copyright © 2022 Selvarasu, Singh, Iyaswamy, Gopalkrishnashetty Sreenivasmurthy, Krishnamoorthi, Bera, Huang and Durairajan. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Molecular Biosciences
Selvarasu, Karthikeyan
Singh, Abhay Kumar
Iyaswamy, Ashok
Gopalkrishnashetty Sreenivasmurthy, Sravan
Krishnamoorthi, Senthilkumar
Bera, Amal Kanti
Huang, Jian-Dong
Durairajan, Siva Sundara Kumar
Reduction of kinesin I heavy chain decreases tau hyperphosphorylation, aggregation, and memory impairment in Alzheimer’s disease and tauopathy models
title Reduction of kinesin I heavy chain decreases tau hyperphosphorylation, aggregation, and memory impairment in Alzheimer’s disease and tauopathy models
title_full Reduction of kinesin I heavy chain decreases tau hyperphosphorylation, aggregation, and memory impairment in Alzheimer’s disease and tauopathy models
title_fullStr Reduction of kinesin I heavy chain decreases tau hyperphosphorylation, aggregation, and memory impairment in Alzheimer’s disease and tauopathy models
title_full_unstemmed Reduction of kinesin I heavy chain decreases tau hyperphosphorylation, aggregation, and memory impairment in Alzheimer’s disease and tauopathy models
title_short Reduction of kinesin I heavy chain decreases tau hyperphosphorylation, aggregation, and memory impairment in Alzheimer’s disease and tauopathy models
title_sort reduction of kinesin i heavy chain decreases tau hyperphosphorylation, aggregation, and memory impairment in alzheimer’s disease and tauopathy models
topic Molecular Biosciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9641281/
https://www.ncbi.nlm.nih.gov/pubmed/36387285
http://dx.doi.org/10.3389/fmolb.2022.1050768
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