Phylogenetic distribution and membrane topology of the LytR-CpsA-Psr protein family

<p>Abstract</p> <p>Background</p> <p>The bacterial cell wall is the target of many antibiotics and cell envelope constituents are critical to host-pathogen interactions. To combat resistance development and virulence, a detailed knowledge of the individual factors invol...

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Main Authors: Berger-Bächi Brigitte, Lüthy Lucas, Hübscher Judith, Stutzmann Meier Patricia
Format: Article
Language:English
Published: BMC 2008-12-01
Series:BMC Genomics
Online Access:http://www.biomedcentral.com/1471-2164/9/617
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spelling doaj-0be6e15b9a28481987d32b67cef59d112020-11-25T01:26:48ZengBMCBMC Genomics1471-21642008-12-019161710.1186/1471-2164-9-617Phylogenetic distribution and membrane topology of the LytR-CpsA-Psr protein familyBerger-Bächi BrigitteLüthy LucasHübscher JudithStutzmann Meier Patricia<p>Abstract</p> <p>Background</p> <p>The bacterial cell wall is the target of many antibiotics and cell envelope constituents are critical to host-pathogen interactions. To combat resistance development and virulence, a detailed knowledge of the individual factors involved is essential. Members of the LytR-CpsA-Psr family of cell envelope-associated attenuators are relevant for β-lactam resistance, biofilm formation, and stress tolerance, and they are suggested to play a role in cell wall maintenance. However, their precise function is still unknown. This study addresses the occurrence as well as sequence-based characteristics of the LytR-CpsA-Psr proteins.</p> <p>Results</p> <p>A comprehensive list of LytR-CpsA-Psr proteins was established, and their phylogenetic distribution and clustering into subgroups was determined. LytR-CpsA-Psr proteins were present in all Gram-positive organisms, except for the cell wall-deficient <it>Mollicutes </it>and one strain of the <it>Clostridiales</it>. In contrast, the majority of Gram-negatives did not contain LytR-CpsA-Psr family members. Despite high sequence divergence, the LytR-CpsA-Psr domains of different subclusters shared a highly similar, predicted mixed a/β-structure, and conserved charged residues. PhoA fusion experiments, using MsrR of <it>Staphylococcus aureus</it>, confirmed membrane topology predictions and extracellular location of its LytR-CpsA-Psr domain.</p> <p>Conclusion</p> <p>The LytR-CpsA-Psr domain is unique to bacteria. The presence of diverse subgroups within the LytR-CpsA-Psr family might indicate functional differences, and could explain variations in phenotypes of respective mutants reported. The identified conserved structural elements and amino acids are likely to be important for the function of the domain and will help to guide future studies of the LytR-CpsA-Psr proteins.</p> http://www.biomedcentral.com/1471-2164/9/617
collection DOAJ
language English
format Article
sources DOAJ
author Berger-Bächi Brigitte
Lüthy Lucas
Hübscher Judith
Stutzmann Meier Patricia
spellingShingle Berger-Bächi Brigitte
Lüthy Lucas
Hübscher Judith
Stutzmann Meier Patricia
Phylogenetic distribution and membrane topology of the LytR-CpsA-Psr protein family
BMC Genomics
author_facet Berger-Bächi Brigitte
Lüthy Lucas
Hübscher Judith
Stutzmann Meier Patricia
author_sort Berger-Bächi Brigitte
title Phylogenetic distribution and membrane topology of the LytR-CpsA-Psr protein family
title_short Phylogenetic distribution and membrane topology of the LytR-CpsA-Psr protein family
title_full Phylogenetic distribution and membrane topology of the LytR-CpsA-Psr protein family
title_fullStr Phylogenetic distribution and membrane topology of the LytR-CpsA-Psr protein family
title_full_unstemmed Phylogenetic distribution and membrane topology of the LytR-CpsA-Psr protein family
title_sort phylogenetic distribution and membrane topology of the lytr-cpsa-psr protein family
publisher BMC
series BMC Genomics
issn 1471-2164
publishDate 2008-12-01
description <p>Abstract</p> <p>Background</p> <p>The bacterial cell wall is the target of many antibiotics and cell envelope constituents are critical to host-pathogen interactions. To combat resistance development and virulence, a detailed knowledge of the individual factors involved is essential. Members of the LytR-CpsA-Psr family of cell envelope-associated attenuators are relevant for β-lactam resistance, biofilm formation, and stress tolerance, and they are suggested to play a role in cell wall maintenance. However, their precise function is still unknown. This study addresses the occurrence as well as sequence-based characteristics of the LytR-CpsA-Psr proteins.</p> <p>Results</p> <p>A comprehensive list of LytR-CpsA-Psr proteins was established, and their phylogenetic distribution and clustering into subgroups was determined. LytR-CpsA-Psr proteins were present in all Gram-positive organisms, except for the cell wall-deficient <it>Mollicutes </it>and one strain of the <it>Clostridiales</it>. In contrast, the majority of Gram-negatives did not contain LytR-CpsA-Psr family members. Despite high sequence divergence, the LytR-CpsA-Psr domains of different subclusters shared a highly similar, predicted mixed a/β-structure, and conserved charged residues. PhoA fusion experiments, using MsrR of <it>Staphylococcus aureus</it>, confirmed membrane topology predictions and extracellular location of its LytR-CpsA-Psr domain.</p> <p>Conclusion</p> <p>The LytR-CpsA-Psr domain is unique to bacteria. The presence of diverse subgroups within the LytR-CpsA-Psr family might indicate functional differences, and could explain variations in phenotypes of respective mutants reported. The identified conserved structural elements and amino acids are likely to be important for the function of the domain and will help to guide future studies of the LytR-CpsA-Psr proteins.</p>
url http://www.biomedcentral.com/1471-2164/9/617
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