Escherichia coli frameshift mutation rate depends on the chromosomal context but not on the GATC content near the mutation site.

Different studies have suggested that mutation rate varies at different positions in the genome. In this work we analyzed if the chromosomal context and/or the presence of GATC sites can affect the frameshift mutation rate in the Escherichia coli genome. We show that in a mismatch repair deficient b...

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Main Authors: Mariana A Martina, Elisa M E Correa, Carlos E Argaraña, José L Barra
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3306285?pdf=render
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spelling doaj-d527e403b02c40968bb83c4b526e7c1b2020-11-24T21:35:42ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-0173e3370110.1371/journal.pone.0033701Escherichia coli frameshift mutation rate depends on the chromosomal context but not on the GATC content near the mutation site.Mariana A MartinaElisa M E CorreaCarlos E ArgarañaJosé L BarraDifferent studies have suggested that mutation rate varies at different positions in the genome. In this work we analyzed if the chromosomal context and/or the presence of GATC sites can affect the frameshift mutation rate in the Escherichia coli genome. We show that in a mismatch repair deficient background, a condition where the mutation rate reflects the fidelity of the DNA polymerization process, the frameshift mutation rate could vary up to four times among different chromosomal contexts. Furthermore, the mismatch repair efficiency could vary up to eight times when compared at different chromosomal locations, indicating that detection and/or repair of frameshift events also depends on the chromosomal context. Also, GATC sequences have been proved to be essential for the correct functioning of the E. coli mismatch repair system. Using bacteriophage heteroduplexes molecules it has been shown that GATC influence the mismatch repair efficiency in a distance- and number-dependent manner, being almost nonfunctional when GATC sequences are located at 1 kb or more from the mutation site. Interestingly, we found that in E. coli genomic DNA the mismatch repair system can efficiently function even if the nearest GATC sequence is located more than 2 kb away from the mutation site. The results presented in this work show that even though frameshift mutations can be efficiently generated and/or repaired anywhere in the genome, these processes can be modulated by the chromosomal context that surrounds the mutation site.http://europepmc.org/articles/PMC3306285?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Mariana A Martina
Elisa M E Correa
Carlos E Argaraña
José L Barra
spellingShingle Mariana A Martina
Elisa M E Correa
Carlos E Argaraña
José L Barra
Escherichia coli frameshift mutation rate depends on the chromosomal context but not on the GATC content near the mutation site.
PLoS ONE
author_facet Mariana A Martina
Elisa M E Correa
Carlos E Argaraña
José L Barra
author_sort Mariana A Martina
title Escherichia coli frameshift mutation rate depends on the chromosomal context but not on the GATC content near the mutation site.
title_short Escherichia coli frameshift mutation rate depends on the chromosomal context but not on the GATC content near the mutation site.
title_full Escherichia coli frameshift mutation rate depends on the chromosomal context but not on the GATC content near the mutation site.
title_fullStr Escherichia coli frameshift mutation rate depends on the chromosomal context but not on the GATC content near the mutation site.
title_full_unstemmed Escherichia coli frameshift mutation rate depends on the chromosomal context but not on the GATC content near the mutation site.
title_sort escherichia coli frameshift mutation rate depends on the chromosomal context but not on the gatc content near the mutation site.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2012-01-01
description Different studies have suggested that mutation rate varies at different positions in the genome. In this work we analyzed if the chromosomal context and/or the presence of GATC sites can affect the frameshift mutation rate in the Escherichia coli genome. We show that in a mismatch repair deficient background, a condition where the mutation rate reflects the fidelity of the DNA polymerization process, the frameshift mutation rate could vary up to four times among different chromosomal contexts. Furthermore, the mismatch repair efficiency could vary up to eight times when compared at different chromosomal locations, indicating that detection and/or repair of frameshift events also depends on the chromosomal context. Also, GATC sequences have been proved to be essential for the correct functioning of the E. coli mismatch repair system. Using bacteriophage heteroduplexes molecules it has been shown that GATC influence the mismatch repair efficiency in a distance- and number-dependent manner, being almost nonfunctional when GATC sequences are located at 1 kb or more from the mutation site. Interestingly, we found that in E. coli genomic DNA the mismatch repair system can efficiently function even if the nearest GATC sequence is located more than 2 kb away from the mutation site. The results presented in this work show that even though frameshift mutations can be efficiently generated and/or repaired anywhere in the genome, these processes can be modulated by the chromosomal context that surrounds the mutation site.
url http://europepmc.org/articles/PMC3306285?pdf=render
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