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Binding of MutS protein to oligonucleotides containing a methylated or an ethylated guanine residue, and correlation with mutation frequency

The MutS-based mismatch repair (MMR) system has been conserved from prokaryotes to humans, and plays important roles in maintaining the high fidelity of genomic DNA. MutS protein recognizes several different types of modified base pairs, including methylated guanine-containing base pairs. Here, we l...

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Autores principales: Taira, Kentaro, Nakamura, Shintaro, Nakano, Khota, Maehara, Daisuke, Okamoto, Keinosuke, Arimoto, Sakae, Loakes, David, Worth, Leroy, Schaaper, Roel M., Seio, Kohji, Sekine, Mitsuo, Negishi, Kazuo, Negishi, Tomoe
Formato: Texto
Lenguaje:English
Publicado: Elsevier 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2365708/
https://www.ncbi.nlm.nih.gov/pubmed/18243250
http://dx.doi.org/10.1016/j.mrfmmm.2007.12.009
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author Taira, Kentaro
Nakamura, Shintaro
Nakano, Khota
Maehara, Daisuke
Okamoto, Keinosuke
Arimoto, Sakae
Loakes, David
Worth, Leroy
Schaaper, Roel M.
Seio, Kohji
Sekine, Mitsuo
Negishi, Kazuo
Negishi, Tomoe
author_facet Taira, Kentaro
Nakamura, Shintaro
Nakano, Khota
Maehara, Daisuke
Okamoto, Keinosuke
Arimoto, Sakae
Loakes, David
Worth, Leroy
Schaaper, Roel M.
Seio, Kohji
Sekine, Mitsuo
Negishi, Kazuo
Negishi, Tomoe
author_sort Taira, Kentaro
collection PubMed
description The MutS-based mismatch repair (MMR) system has been conserved from prokaryotes to humans, and plays important roles in maintaining the high fidelity of genomic DNA. MutS protein recognizes several different types of modified base pairs, including methylated guanine-containing base pairs. Here, we looked at the relationship between recognition and the effects of methylating versus ethylating agents on mutagenesis, using a MutS-deficient strain of E. coli. We find that while methylating agents induce mutations more effectively in a MutS-deficient strain than in wild-type, this genetic background does not affect mutagenicity by ethylating agents. Thus, the role of E. coli MMR with methylation-induced mutagenesis appears to be greater than ethylation-induced mutagenesis. To further understand this difference an early step of repair was examined with these alkylating agents. A comparison of binding affinities of MutS with O(6)-alkylated guanine base paired with thymine, which could lead to transition mutations, versus cytosine which could not, was tested. Moreover, we compared binding of MutS to oligoduplexes containing different base pairs; namely, O(6)-MeG:T, O(6)-MeG:C, O(6)-EtG:T, O(6)-EtG:C, G:T and G:C. Dissociation constants (K(d)), which reflect the strength of binding, followed the order G:T- > O(6)-MeG:T- > O(6)-EtG:T- = O(6)-EtG:C- ≥ O(6)-MeG:C- > G:C. These results suggest that a thymine base paired with O(6)-methyl guanine is specifically recognized by MutS and therefore should be removed more efficiently than a thymine opposite O(6)-ethylated guanine. Taken together, the data suggest that in E. coli, the MMR system plays a more significant role in repair of methylation-induced lesions than those caused by ethylation.
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spelling pubmed-23657082009-04-02 Binding of MutS protein to oligonucleotides containing a methylated or an ethylated guanine residue, and correlation with mutation frequency Taira, Kentaro Nakamura, Shintaro Nakano, Khota Maehara, Daisuke Okamoto, Keinosuke Arimoto, Sakae Loakes, David Worth, Leroy Schaaper, Roel M. Seio, Kohji Sekine, Mitsuo Negishi, Kazuo Negishi, Tomoe Mutat Res Article The MutS-based mismatch repair (MMR) system has been conserved from prokaryotes to humans, and plays important roles in maintaining the high fidelity of genomic DNA. MutS protein recognizes several different types of modified base pairs, including methylated guanine-containing base pairs. Here, we looked at the relationship between recognition and the effects of methylating versus ethylating agents on mutagenesis, using a MutS-deficient strain of E. coli. We find that while methylating agents induce mutations more effectively in a MutS-deficient strain than in wild-type, this genetic background does not affect mutagenicity by ethylating agents. Thus, the role of E. coli MMR with methylation-induced mutagenesis appears to be greater than ethylation-induced mutagenesis. To further understand this difference an early step of repair was examined with these alkylating agents. A comparison of binding affinities of MutS with O(6)-alkylated guanine base paired with thymine, which could lead to transition mutations, versus cytosine which could not, was tested. Moreover, we compared binding of MutS to oligoduplexes containing different base pairs; namely, O(6)-MeG:T, O(6)-MeG:C, O(6)-EtG:T, O(6)-EtG:C, G:T and G:C. Dissociation constants (K(d)), which reflect the strength of binding, followed the order G:T- > O(6)-MeG:T- > O(6)-EtG:T- = O(6)-EtG:C- ≥ O(6)-MeG:C- > G:C. These results suggest that a thymine base paired with O(6)-methyl guanine is specifically recognized by MutS and therefore should be removed more efficiently than a thymine opposite O(6)-ethylated guanine. Taken together, the data suggest that in E. coli, the MMR system plays a more significant role in repair of methylation-induced lesions than those caused by ethylation. Elsevier 2008-04-02 /pmc/articles/PMC2365708/ /pubmed/18243250 http://dx.doi.org/10.1016/j.mrfmmm.2007.12.009 Text en © 2008 Elsevier B.V. https://creativecommons.org/licenses/by/3.0/ Open Access under CC BY 3.0 (https://creativecommons.org/licenses/by/3.0/) license
spellingShingle Article
Taira, Kentaro
Nakamura, Shintaro
Nakano, Khota
Maehara, Daisuke
Okamoto, Keinosuke
Arimoto, Sakae
Loakes, David
Worth, Leroy
Schaaper, Roel M.
Seio, Kohji
Sekine, Mitsuo
Negishi, Kazuo
Negishi, Tomoe
Binding of MutS protein to oligonucleotides containing a methylated or an ethylated guanine residue, and correlation with mutation frequency
title Binding of MutS protein to oligonucleotides containing a methylated or an ethylated guanine residue, and correlation with mutation frequency
title_full Binding of MutS protein to oligonucleotides containing a methylated or an ethylated guanine residue, and correlation with mutation frequency
title_fullStr Binding of MutS protein to oligonucleotides containing a methylated or an ethylated guanine residue, and correlation with mutation frequency
title_full_unstemmed Binding of MutS protein to oligonucleotides containing a methylated or an ethylated guanine residue, and correlation with mutation frequency
title_short Binding of MutS protein to oligonucleotides containing a methylated or an ethylated guanine residue, and correlation with mutation frequency
title_sort binding of muts protein to oligonucleotides containing a methylated or an ethylated guanine residue, and correlation with mutation frequency
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2365708/
https://www.ncbi.nlm.nih.gov/pubmed/18243250
http://dx.doi.org/10.1016/j.mrfmmm.2007.12.009
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