Simple sequence repeats and mucoid conversion: biased mucA mutagenesis in mismatch repair-deficient Pseudomonas aeruginosa.

In Pseudomonas aeruginosa, conversion to the mucoid phenotype marks the onset of an irreversible state of the infection in Cystic Fibrosis (CF) patients. The main pathway for mucoid conversion is mutagenesis of the mucA gene, frequently due to -1 bp deletions in a simple sequence repeat (SSR) of 5 G...

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Main Authors: Alejandro J Moyano, Andrea M Smania
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2009-12-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC2781719?pdf=render
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author Alejandro J Moyano
Andrea M Smania
author_facet Alejandro J Moyano
Andrea M Smania
author_sort Alejandro J Moyano
collection DOAJ
description In Pseudomonas aeruginosa, conversion to the mucoid phenotype marks the onset of an irreversible state of the infection in Cystic Fibrosis (CF) patients. The main pathway for mucoid conversion is mutagenesis of the mucA gene, frequently due to -1 bp deletions in a simple sequence repeat (SSR) of 5 Gs (G(5)-SSR(426)). We have recently observed that this mucA mutation is particularly accentuated in Mismatch Repair System (MRS)-deficient cells grown in vitro. Interestingly, previous reports have shown a high prevalence of hypermutable MRS-deficient strains occurring naturally in CF chronic lung infections. Here, we used mucA as a forward mutation model to systematically evaluate the role of G(5)-SSR(426) in conversion to mucoidy in a MRS-deficient background, with this being the first analysis combining SSR-dependent localized hypermutability and the acquisition of a particular virulence/persistence trait in P. aeruginosa. In this study, mucA alleles were engineered with different contents of G:C SSRs, and tested for their effect on the mucoid conversion frequency and mucA mutational spectra in a mutS-deficient strain of P. aeruginosa. Importantly, deletion of G(5)-SSR(426) severely reduced the emergence frequency of mucoid variants, with no preferential site of mutagenesis within mucA. Moreover, although mutagenesis in mucA was not totally removed, this was no longer the main pathway for mucoid conversion, suggesting that G(5)-SSR(426) biased mutations towards mucA. Mutagenesis in mucA was restored by the addition of a new SSR (C(6)-SSR(431)), and even synergistically increased when G(5)-SSR(426) and C(6)-SSR(431) were present simultaneously, with the mucA mutations being restricted to -1 bp deletions within any of both G:C SSRs. These results confirm a critical role for G(5)-SSR(426) enhancing the mutagenic process of mucA in MRS-deficient cells, and shed light on another mechanism, the SSR- localized hypermutability, contributing to mucoid conversion in P. aeruginosa.
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spelling doaj.art-3ea04ae73704495b8ad0ab9b8db3a7322022-12-21T19:55:13ZengPublic Library of Science (PLoS)PLoS ONE1932-62032009-12-01412e820310.1371/journal.pone.0008203Simple sequence repeats and mucoid conversion: biased mucA mutagenesis in mismatch repair-deficient Pseudomonas aeruginosa.Alejandro J MoyanoAndrea M SmaniaIn Pseudomonas aeruginosa, conversion to the mucoid phenotype marks the onset of an irreversible state of the infection in Cystic Fibrosis (CF) patients. The main pathway for mucoid conversion is mutagenesis of the mucA gene, frequently due to -1 bp deletions in a simple sequence repeat (SSR) of 5 Gs (G(5)-SSR(426)). We have recently observed that this mucA mutation is particularly accentuated in Mismatch Repair System (MRS)-deficient cells grown in vitro. Interestingly, previous reports have shown a high prevalence of hypermutable MRS-deficient strains occurring naturally in CF chronic lung infections. Here, we used mucA as a forward mutation model to systematically evaluate the role of G(5)-SSR(426) in conversion to mucoidy in a MRS-deficient background, with this being the first analysis combining SSR-dependent localized hypermutability and the acquisition of a particular virulence/persistence trait in P. aeruginosa. In this study, mucA alleles were engineered with different contents of G:C SSRs, and tested for their effect on the mucoid conversion frequency and mucA mutational spectra in a mutS-deficient strain of P. aeruginosa. Importantly, deletion of G(5)-SSR(426) severely reduced the emergence frequency of mucoid variants, with no preferential site of mutagenesis within mucA. Moreover, although mutagenesis in mucA was not totally removed, this was no longer the main pathway for mucoid conversion, suggesting that G(5)-SSR(426) biased mutations towards mucA. Mutagenesis in mucA was restored by the addition of a new SSR (C(6)-SSR(431)), and even synergistically increased when G(5)-SSR(426) and C(6)-SSR(431) were present simultaneously, with the mucA mutations being restricted to -1 bp deletions within any of both G:C SSRs. These results confirm a critical role for G(5)-SSR(426) enhancing the mutagenic process of mucA in MRS-deficient cells, and shed light on another mechanism, the SSR- localized hypermutability, contributing to mucoid conversion in P. aeruginosa.http://europepmc.org/articles/PMC2781719?pdf=render
spellingShingle Alejandro J Moyano
Andrea M Smania
Simple sequence repeats and mucoid conversion: biased mucA mutagenesis in mismatch repair-deficient Pseudomonas aeruginosa.
PLoS ONE
title Simple sequence repeats and mucoid conversion: biased mucA mutagenesis in mismatch repair-deficient Pseudomonas aeruginosa.
title_full Simple sequence repeats and mucoid conversion: biased mucA mutagenesis in mismatch repair-deficient Pseudomonas aeruginosa.
title_fullStr Simple sequence repeats and mucoid conversion: biased mucA mutagenesis in mismatch repair-deficient Pseudomonas aeruginosa.
title_full_unstemmed Simple sequence repeats and mucoid conversion: biased mucA mutagenesis in mismatch repair-deficient Pseudomonas aeruginosa.
title_short Simple sequence repeats and mucoid conversion: biased mucA mutagenesis in mismatch repair-deficient Pseudomonas aeruginosa.
title_sort simple sequence repeats and mucoid conversion biased muca mutagenesis in mismatch repair deficient pseudomonas aeruginosa
url http://europepmc.org/articles/PMC2781719?pdf=render
work_keys_str_mv AT alejandrojmoyano simplesequencerepeatsandmucoidconversionbiasedmucamutagenesisinmismatchrepairdeficientpseudomonasaeruginosa
AT andreamsmania simplesequencerepeatsandmucoidconversionbiasedmucamutagenesisinmismatchrepairdeficientpseudomonasaeruginosa