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Binding to the Minor Groove of the Double-Strand, Tau Protein Prevents DNA from Damage by Peroxidation

Tau, an important microtubule associated protein, has been found to bind to DNA, and to be localized in the nuclei of both neurons and some non-neuronal cells. Here, using electrophoretic mobility shifting assay (EMSA) in the presence of DNA with different chain-lengths, we observed that tau protein...

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Autores principales: Wei, Yan, Qu, Mei-Hua, Wang, Xing-Sheng, Chen, Lan, Wang, Dong-Liang, Liu, Ying, Hua, Qian, He, Rong-Qiao
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2432501/
https://www.ncbi.nlm.nih.gov/pubmed/18596978
http://dx.doi.org/10.1371/journal.pone.0002600
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author Wei, Yan
Qu, Mei-Hua
Wang, Xing-Sheng
Chen, Lan
Wang, Dong-Liang
Liu, Ying
Hua, Qian
He, Rong-Qiao
author_facet Wei, Yan
Qu, Mei-Hua
Wang, Xing-Sheng
Chen, Lan
Wang, Dong-Liang
Liu, Ying
Hua, Qian
He, Rong-Qiao
author_sort Wei, Yan
collection PubMed
description Tau, an important microtubule associated protein, has been found to bind to DNA, and to be localized in the nuclei of both neurons and some non-neuronal cells. Here, using electrophoretic mobility shifting assay (EMSA) in the presence of DNA with different chain-lengths, we observed that tau protein favored binding to a 13 bp or a longer polynucleotide. The results from atomic force microscopy also showed that tau protein preferred a 13 bp polynucleotide to a 12 bp or shorter polynucleotide. In a competitive assay, a minor groove binder distamycin A was able to replace the bound tau from the DNA double helix, indicating that tau protein binds to the minor groove. Tau protein was able to protect the double-strand from digestion in the presence of DNase I that was bound to the minor groove. On the other hand, a major groove binder methyl green as a negative competitor exhibited little effect on the retardation of tau-DNA complex in EMSA. This further indicates the DNA minor groove as the binding site for tau protein. EMSA with truncated tau proteins showed that both the proline-rich domain (PRD) and the microtubule-binding domain (MTBD) contributed to the interaction with DNA; that is to say, both PRD and MTBD bound to the minor groove of DNA and bent the double-strand, as observed by electron microscopy. To investigate whether tau protein is able to prevent DNA from the impairment by hydroxyl free radical, the chemiluminescence emitted by the phen-Cu/H(2)O(2)/ascorbate was measured. The emission intensity of the luminescence was markedly decreased when tau protein was present, suggesting a significant protection of DNA from the damage in the presence of hydroxyl free radical.
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spelling pubmed-24325012008-07-02 Binding to the Minor Groove of the Double-Strand, Tau Protein Prevents DNA from Damage by Peroxidation Wei, Yan Qu, Mei-Hua Wang, Xing-Sheng Chen, Lan Wang, Dong-Liang Liu, Ying Hua, Qian He, Rong-Qiao PLoS One Research Article Tau, an important microtubule associated protein, has been found to bind to DNA, and to be localized in the nuclei of both neurons and some non-neuronal cells. Here, using electrophoretic mobility shifting assay (EMSA) in the presence of DNA with different chain-lengths, we observed that tau protein favored binding to a 13 bp or a longer polynucleotide. The results from atomic force microscopy also showed that tau protein preferred a 13 bp polynucleotide to a 12 bp or shorter polynucleotide. In a competitive assay, a minor groove binder distamycin A was able to replace the bound tau from the DNA double helix, indicating that tau protein binds to the minor groove. Tau protein was able to protect the double-strand from digestion in the presence of DNase I that was bound to the minor groove. On the other hand, a major groove binder methyl green as a negative competitor exhibited little effect on the retardation of tau-DNA complex in EMSA. This further indicates the DNA minor groove as the binding site for tau protein. EMSA with truncated tau proteins showed that both the proline-rich domain (PRD) and the microtubule-binding domain (MTBD) contributed to the interaction with DNA; that is to say, both PRD and MTBD bound to the minor groove of DNA and bent the double-strand, as observed by electron microscopy. To investigate whether tau protein is able to prevent DNA from the impairment by hydroxyl free radical, the chemiluminescence emitted by the phen-Cu/H(2)O(2)/ascorbate was measured. The emission intensity of the luminescence was markedly decreased when tau protein was present, suggesting a significant protection of DNA from the damage in the presence of hydroxyl free radical. Public Library of Science 2008-07-02 /pmc/articles/PMC2432501/ /pubmed/18596978 http://dx.doi.org/10.1371/journal.pone.0002600 Text en Wei et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Wei, Yan
Qu, Mei-Hua
Wang, Xing-Sheng
Chen, Lan
Wang, Dong-Liang
Liu, Ying
Hua, Qian
He, Rong-Qiao
Binding to the Minor Groove of the Double-Strand, Tau Protein Prevents DNA from Damage by Peroxidation
title Binding to the Minor Groove of the Double-Strand, Tau Protein Prevents DNA from Damage by Peroxidation
title_full Binding to the Minor Groove of the Double-Strand, Tau Protein Prevents DNA from Damage by Peroxidation
title_fullStr Binding to the Minor Groove of the Double-Strand, Tau Protein Prevents DNA from Damage by Peroxidation
title_full_unstemmed Binding to the Minor Groove of the Double-Strand, Tau Protein Prevents DNA from Damage by Peroxidation
title_short Binding to the Minor Groove of the Double-Strand, Tau Protein Prevents DNA from Damage by Peroxidation
title_sort binding to the minor groove of the double-strand, tau protein prevents dna from damage by peroxidation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2432501/
https://www.ncbi.nlm.nih.gov/pubmed/18596978
http://dx.doi.org/10.1371/journal.pone.0002600
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