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Stationary-Phase Mutagenesis in Stressed Bacillus subtilis Cells Operates by Mfd-Dependent Mutagenic Pathways

In replication-limited cells of Bacillus subtilis, Mfd is mutagenic at highly transcribed regions, even in the absence of bulky DNA lesions. However, the mechanism leading to increased mutagenesis through Mfd remains currently unknown. Here, we report that Mfd may promote mutagenesis in nutritionall...

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Autores principales: Gómez-Marroquín, Martha, Martin, Holly A., Pepper, Amber, Girard, Mary E., Kidman, Amanda A., Vallin, Carmen, Yasbin, Ronald E., Pedraza-Reyes, Mario, Robleto, Eduardo A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4962003/
https://www.ncbi.nlm.nih.gov/pubmed/27399782
http://dx.doi.org/10.3390/genes7070033
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author Gómez-Marroquín, Martha
Martin, Holly A.
Pepper, Amber
Girard, Mary E.
Kidman, Amanda A.
Vallin, Carmen
Yasbin, Ronald E.
Pedraza-Reyes, Mario
Robleto, Eduardo A.
author_facet Gómez-Marroquín, Martha
Martin, Holly A.
Pepper, Amber
Girard, Mary E.
Kidman, Amanda A.
Vallin, Carmen
Yasbin, Ronald E.
Pedraza-Reyes, Mario
Robleto, Eduardo A.
author_sort Gómez-Marroquín, Martha
collection PubMed
description In replication-limited cells of Bacillus subtilis, Mfd is mutagenic at highly transcribed regions, even in the absence of bulky DNA lesions. However, the mechanism leading to increased mutagenesis through Mfd remains currently unknown. Here, we report that Mfd may promote mutagenesis in nutritionally stressed B. subtilis cells by coordinating error-prone repair events mediated by UvrA, MutY and PolI. Using a point-mutated gene conferring leucine auxotrophy as a genetic marker, it was found that the absence of UvrA reduced the Leu(+) revertants and that a second mutation in mfd reduced mutagenesis further. Moreover, the mfd and polA mutants presented low but similar reversion frequencies compared to the parental strain. These results suggest that Mfd promotes mutagenic events that required the participation of NER pathway and PolI. Remarkably, this Mfd-dependent mutagenic pathway was found to be epistatic onto MutY; however, whereas the MutY-dependent Leu(+) reversions required Mfd, a direct interaction between these proteins was not apparent. In summary, our results support the concept that Mfd promotes mutagenesis in starved B. subtilis cells by coordinating both known and previously unknown Mfd-associated repair pathways. These mutagenic processes bias the production of genetic diversity towards highly transcribed regions in the genome.
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spelling pubmed-49620032016-08-01 Stationary-Phase Mutagenesis in Stressed Bacillus subtilis Cells Operates by Mfd-Dependent Mutagenic Pathways Gómez-Marroquín, Martha Martin, Holly A. Pepper, Amber Girard, Mary E. Kidman, Amanda A. Vallin, Carmen Yasbin, Ronald E. Pedraza-Reyes, Mario Robleto, Eduardo A. Genes (Basel) Article In replication-limited cells of Bacillus subtilis, Mfd is mutagenic at highly transcribed regions, even in the absence of bulky DNA lesions. However, the mechanism leading to increased mutagenesis through Mfd remains currently unknown. Here, we report that Mfd may promote mutagenesis in nutritionally stressed B. subtilis cells by coordinating error-prone repair events mediated by UvrA, MutY and PolI. Using a point-mutated gene conferring leucine auxotrophy as a genetic marker, it was found that the absence of UvrA reduced the Leu(+) revertants and that a second mutation in mfd reduced mutagenesis further. Moreover, the mfd and polA mutants presented low but similar reversion frequencies compared to the parental strain. These results suggest that Mfd promotes mutagenic events that required the participation of NER pathway and PolI. Remarkably, this Mfd-dependent mutagenic pathway was found to be epistatic onto MutY; however, whereas the MutY-dependent Leu(+) reversions required Mfd, a direct interaction between these proteins was not apparent. In summary, our results support the concept that Mfd promotes mutagenesis in starved B. subtilis cells by coordinating both known and previously unknown Mfd-associated repair pathways. These mutagenic processes bias the production of genetic diversity towards highly transcribed regions in the genome. MDPI 2016-07-05 /pmc/articles/PMC4962003/ /pubmed/27399782 http://dx.doi.org/10.3390/genes7070033 Text en © 2016 by the authors; 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Gómez-Marroquín, Martha
Martin, Holly A.
Pepper, Amber
Girard, Mary E.
Kidman, Amanda A.
Vallin, Carmen
Yasbin, Ronald E.
Pedraza-Reyes, Mario
Robleto, Eduardo A.
Stationary-Phase Mutagenesis in Stressed Bacillus subtilis Cells Operates by Mfd-Dependent Mutagenic Pathways
title Stationary-Phase Mutagenesis in Stressed Bacillus subtilis Cells Operates by Mfd-Dependent Mutagenic Pathways
title_full Stationary-Phase Mutagenesis in Stressed Bacillus subtilis Cells Operates by Mfd-Dependent Mutagenic Pathways
title_fullStr Stationary-Phase Mutagenesis in Stressed Bacillus subtilis Cells Operates by Mfd-Dependent Mutagenic Pathways
title_full_unstemmed Stationary-Phase Mutagenesis in Stressed Bacillus subtilis Cells Operates by Mfd-Dependent Mutagenic Pathways
title_short Stationary-Phase Mutagenesis in Stressed Bacillus subtilis Cells Operates by Mfd-Dependent Mutagenic Pathways
title_sort stationary-phase mutagenesis in stressed bacillus subtilis cells operates by mfd-dependent mutagenic pathways
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4962003/
https://www.ncbi.nlm.nih.gov/pubmed/27399782
http://dx.doi.org/10.3390/genes7070033
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