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The proline-rich domain of tau plays a role in interactions with actin

BACKGROUND: The microtubule-associated protein tau is able to interact with actin and serves as a cross-linker between the microtubule and actin networks. The microtubule-binding domain of tau is known to be involved in its interaction with actin. Here, we address the question of whether the other d...

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Autores principales: He, Hai Jin, Wang, Xing Sheng, Pan, Rong, Wang, Dong Liang, Liu, Ming Nan, He, Rong Qiao
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2784441/
https://www.ncbi.nlm.nih.gov/pubmed/19895707
http://dx.doi.org/10.1186/1471-2121-10-81
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author He, Hai Jin
Wang, Xing Sheng
Pan, Rong
Wang, Dong Liang
Liu, Ming Nan
He, Rong Qiao
author_facet He, Hai Jin
Wang, Xing Sheng
Pan, Rong
Wang, Dong Liang
Liu, Ming Nan
He, Rong Qiao
author_sort He, Hai Jin
collection PubMed
description BACKGROUND: The microtubule-associated protein tau is able to interact with actin and serves as a cross-linker between the microtubule and actin networks. The microtubule-binding domain of tau is known to be involved in its interaction with actin. Here, we address the question of whether the other domains of tau also interact with actin. RESULTS: Several tau truncation and deletion mutants were constructed, namely N-terminal region (tauN), proline-rich domain (tauPRD), microtubule binding domain (tauMTBD) and C-terminal region (tauC) truncation mutants, and microtubule binding domain (tauΔMTBD) and proline-rich domain/microtubule binding domain (tauΔPRD&MTBD) deletion mutants. The proline-rich domain truncation mutant (tauPRD) and the microtubule binding domain deletion mutant (tauΔMTBD) promoted the formation of actin filaments. However, actin assembly was not observed in the presence of the N-terminal and C-terminal truncation mutants. These results indicate that the proline-rich domain is involved in the association of tau with G-actin. Furthermore, results from co-sedimentation, solid phase assays and electron microscopy showed that the proline-rich domain is also capable of binding to F-actin and inducing F-actin bundles. Using solid phase assays to analyze apparent dissociation constants for the binding of tau and its mutants to F-actin resulted in a sequence of affinity for F-actin: tau >> microtubule binding domain > proline-rich domain. Moreover, we observed that the proline-rich domain was able to associate with and bundle F-actin at physiological ionic strength. CONCLUSION: The proline-rich domain is a functional structure playing a role in the association of tau with actin. This suggests that the proline-rich domain and the microtubule-binding domain of tau are both involved in binding to and bundling F-actin.
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spelling pubmed-27844412009-11-27 The proline-rich domain of tau plays a role in interactions with actin He, Hai Jin Wang, Xing Sheng Pan, Rong Wang, Dong Liang Liu, Ming Nan He, Rong Qiao BMC Cell Biol Research article BACKGROUND: The microtubule-associated protein tau is able to interact with actin and serves as a cross-linker between the microtubule and actin networks. The microtubule-binding domain of tau is known to be involved in its interaction with actin. Here, we address the question of whether the other domains of tau also interact with actin. RESULTS: Several tau truncation and deletion mutants were constructed, namely N-terminal region (tauN), proline-rich domain (tauPRD), microtubule binding domain (tauMTBD) and C-terminal region (tauC) truncation mutants, and microtubule binding domain (tauΔMTBD) and proline-rich domain/microtubule binding domain (tauΔPRD&MTBD) deletion mutants. The proline-rich domain truncation mutant (tauPRD) and the microtubule binding domain deletion mutant (tauΔMTBD) promoted the formation of actin filaments. However, actin assembly was not observed in the presence of the N-terminal and C-terminal truncation mutants. These results indicate that the proline-rich domain is involved in the association of tau with G-actin. Furthermore, results from co-sedimentation, solid phase assays and electron microscopy showed that the proline-rich domain is also capable of binding to F-actin and inducing F-actin bundles. Using solid phase assays to analyze apparent dissociation constants for the binding of tau and its mutants to F-actin resulted in a sequence of affinity for F-actin: tau >> microtubule binding domain > proline-rich domain. Moreover, we observed that the proline-rich domain was able to associate with and bundle F-actin at physiological ionic strength. CONCLUSION: The proline-rich domain is a functional structure playing a role in the association of tau with actin. This suggests that the proline-rich domain and the microtubule-binding domain of tau are both involved in binding to and bundling F-actin. BioMed Central 2009-11-08 /pmc/articles/PMC2784441/ /pubmed/19895707 http://dx.doi.org/10.1186/1471-2121-10-81 Text en Copyright ©2009 He et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research article
He, Hai Jin
Wang, Xing Sheng
Pan, Rong
Wang, Dong Liang
Liu, Ming Nan
He, Rong Qiao
The proline-rich domain of tau plays a role in interactions with actin
title The proline-rich domain of tau plays a role in interactions with actin
title_full The proline-rich domain of tau plays a role in interactions with actin
title_fullStr The proline-rich domain of tau plays a role in interactions with actin
title_full_unstemmed The proline-rich domain of tau plays a role in interactions with actin
title_short The proline-rich domain of tau plays a role in interactions with actin
title_sort proline-rich domain of tau plays a role in interactions with actin
topic Research article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2784441/
https://www.ncbi.nlm.nih.gov/pubmed/19895707
http://dx.doi.org/10.1186/1471-2121-10-81
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