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Deciphering the Effect of Lysine Acetylation on the Misfolding and Aggregation of Human Tau Fragment (171)IPAKTPPAPK(180) Using Molecular Dynamic Simulation and the Markov State Model

The formation of neurofibrillary tangles (NFT) with β-sheet-rich structure caused by abnormal aggregation of misfolded microtubule-associated protein Tau is a hallmark of tauopathies, including Alzheimer’s Disease. It has been reported that acetylation, especially K174 located in the proline-rich re...

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Autores principales: Shah, Syed Jawad Ali, Zhong, Haiyang, Zhang, Qianqian, Liu, Huanxiang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8910285/
https://www.ncbi.nlm.nih.gov/pubmed/35269542
http://dx.doi.org/10.3390/ijms23052399
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author Shah, Syed Jawad Ali
Zhong, Haiyang
Zhang, Qianqian
Liu, Huanxiang
author_facet Shah, Syed Jawad Ali
Zhong, Haiyang
Zhang, Qianqian
Liu, Huanxiang
author_sort Shah, Syed Jawad Ali
collection PubMed
description The formation of neurofibrillary tangles (NFT) with β-sheet-rich structure caused by abnormal aggregation of misfolded microtubule-associated protein Tau is a hallmark of tauopathies, including Alzheimer’s Disease. It has been reported that acetylation, especially K174 located in the proline-rich region, can largely promote Tau aggregation. So far, the mechanism of the abnormal acetylation of Tau that affects its misfolding and aggregation is still unclear. Therefore, revealing the effect of acetylation on Tau aggregation could help elucidate the pathogenic mechanism of tauopathies. In this study, molecular dynamics simulation combined with multiple computational analytical methods were performed to reveal the effect of K174 acetylation on the spontaneous aggregation of Tau peptide (171)IPAKTPPAPK(180), and the dimerization mechanism as an early stage of the spontaneous aggregation was further specifically analyzed by Markov state model (MSM) analysis. The results showed that both the actual acetylation and the mutation mimicking the acetylated state at K174 induced the aggregation of the studied Tau fragment; however, the effect of actual acetylation on the aggregation was more pronounced. In addition, acetylated K174 plays a major contributing role in forming and stabilizing the antiparallel β-sheet dimer by forming several hydrogen bonds and side chain van der Waals interactions with residues I171, P172, A173 and T175 of the corresponding chain. In brief, this study uncovered the underlying mechanism of Tau peptide aggregation in response to the lysine K174 acetylation, which can deepen our understanding on the pathogenesis of tauopathies.
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spelling pubmed-89102852022-03-11 Deciphering the Effect of Lysine Acetylation on the Misfolding and Aggregation of Human Tau Fragment (171)IPAKTPPAPK(180) Using Molecular Dynamic Simulation and the Markov State Model Shah, Syed Jawad Ali Zhong, Haiyang Zhang, Qianqian Liu, Huanxiang Int J Mol Sci Article The formation of neurofibrillary tangles (NFT) with β-sheet-rich structure caused by abnormal aggregation of misfolded microtubule-associated protein Tau is a hallmark of tauopathies, including Alzheimer’s Disease. It has been reported that acetylation, especially K174 located in the proline-rich region, can largely promote Tau aggregation. So far, the mechanism of the abnormal acetylation of Tau that affects its misfolding and aggregation is still unclear. Therefore, revealing the effect of acetylation on Tau aggregation could help elucidate the pathogenic mechanism of tauopathies. In this study, molecular dynamics simulation combined with multiple computational analytical methods were performed to reveal the effect of K174 acetylation on the spontaneous aggregation of Tau peptide (171)IPAKTPPAPK(180), and the dimerization mechanism as an early stage of the spontaneous aggregation was further specifically analyzed by Markov state model (MSM) analysis. The results showed that both the actual acetylation and the mutation mimicking the acetylated state at K174 induced the aggregation of the studied Tau fragment; however, the effect of actual acetylation on the aggregation was more pronounced. In addition, acetylated K174 plays a major contributing role in forming and stabilizing the antiparallel β-sheet dimer by forming several hydrogen bonds and side chain van der Waals interactions with residues I171, P172, A173 and T175 of the corresponding chain. In brief, this study uncovered the underlying mechanism of Tau peptide aggregation in response to the lysine K174 acetylation, which can deepen our understanding on the pathogenesis of tauopathies. MDPI 2022-02-22 /pmc/articles/PMC8910285/ /pubmed/35269542 http://dx.doi.org/10.3390/ijms23052399 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Shah, Syed Jawad Ali
Zhong, Haiyang
Zhang, Qianqian
Liu, Huanxiang
Deciphering the Effect of Lysine Acetylation on the Misfolding and Aggregation of Human Tau Fragment (171)IPAKTPPAPK(180) Using Molecular Dynamic Simulation and the Markov State Model
title Deciphering the Effect of Lysine Acetylation on the Misfolding and Aggregation of Human Tau Fragment (171)IPAKTPPAPK(180) Using Molecular Dynamic Simulation and the Markov State Model
title_full Deciphering the Effect of Lysine Acetylation on the Misfolding and Aggregation of Human Tau Fragment (171)IPAKTPPAPK(180) Using Molecular Dynamic Simulation and the Markov State Model
title_fullStr Deciphering the Effect of Lysine Acetylation on the Misfolding and Aggregation of Human Tau Fragment (171)IPAKTPPAPK(180) Using Molecular Dynamic Simulation and the Markov State Model
title_full_unstemmed Deciphering the Effect of Lysine Acetylation on the Misfolding and Aggregation of Human Tau Fragment (171)IPAKTPPAPK(180) Using Molecular Dynamic Simulation and the Markov State Model
title_short Deciphering the Effect of Lysine Acetylation on the Misfolding and Aggregation of Human Tau Fragment (171)IPAKTPPAPK(180) Using Molecular Dynamic Simulation and the Markov State Model
title_sort deciphering the effect of lysine acetylation on the misfolding and aggregation of human tau fragment (171)ipaktppapk(180) using molecular dynamic simulation and the markov state model
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8910285/
https://www.ncbi.nlm.nih.gov/pubmed/35269542
http://dx.doi.org/10.3390/ijms23052399
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