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A Staphylococcus aureus ypfP mutant with strongly reduced lipoteichoic acid (LTA) content: LTA governs bacterial surface properties and autolysin activity

Many Gram-positive bacteria produce lipoteichoic acid (LTA) polymers whose physiological roles have remained a matter of debate because of the lack of LTA-deficient mutants. The ypfP gene responsible for biosynthesis of a glycolipid found in LTA was deleted in Staphylococcus aureus SA113, causing 87...

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Autores principales: Fedtke, Iris, Mader, Diana, Kohler, Thomas, Moll, Hermann, Nicholson, Graeme, Biswas, Raja, Henseler, Katja, Götz, Friedrich, Zähringer, Ulrich, Peschel, Andreas
Formato: Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2169524/
https://www.ncbi.nlm.nih.gov/pubmed/17640274
http://dx.doi.org/10.1111/j.1365-2958.2007.05854.x
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author Fedtke, Iris
Mader, Diana
Kohler, Thomas
Moll, Hermann
Nicholson, Graeme
Biswas, Raja
Henseler, Katja
Götz, Friedrich
Zähringer, Ulrich
Peschel, Andreas
author_facet Fedtke, Iris
Mader, Diana
Kohler, Thomas
Moll, Hermann
Nicholson, Graeme
Biswas, Raja
Henseler, Katja
Götz, Friedrich
Zähringer, Ulrich
Peschel, Andreas
author_sort Fedtke, Iris
collection PubMed
description Many Gram-positive bacteria produce lipoteichoic acid (LTA) polymers whose physiological roles have remained a matter of debate because of the lack of LTA-deficient mutants. The ypfP gene responsible for biosynthesis of a glycolipid found in LTA was deleted in Staphylococcus aureus SA113, causing 87% reduction of the LTA content. Mass spectrometry and nuclear magnetic resonance spectroscopy revealed that the mutant LTA contained a diacylglycerol anchor instead of the glycolipid, whereas the remaining part was similar to the wild-type polymer except that it was shorter. The LTA mutant strain revealed no major changes in patterns of cell wall proteins or autolytic enzymes compared with the parental strain indicating that LTA may be less important in S. aureus protein attachment than previously thought. However, the autolytic activity of the mutant was strongly reduced demonstrating a role of LTA in controlling autolysin activity. Moreover, the hydrophobicity of the LTA mutant was altered and its ability to form biofilms on plastic was completely abrogated indicating a profound impact of LTA on physicochemical properties of bacterial surfaces. We propose to consider LTA and its biosynthetic enzymes as targets for new antibiofilm strategies.
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spelling pubmed-21695242008-01-03 A Staphylococcus aureus ypfP mutant with strongly reduced lipoteichoic acid (LTA) content: LTA governs bacterial surface properties and autolysin activity Fedtke, Iris Mader, Diana Kohler, Thomas Moll, Hermann Nicholson, Graeme Biswas, Raja Henseler, Katja Götz, Friedrich Zähringer, Ulrich Peschel, Andreas Mol Microbiol Research Articles Many Gram-positive bacteria produce lipoteichoic acid (LTA) polymers whose physiological roles have remained a matter of debate because of the lack of LTA-deficient mutants. The ypfP gene responsible for biosynthesis of a glycolipid found in LTA was deleted in Staphylococcus aureus SA113, causing 87% reduction of the LTA content. Mass spectrometry and nuclear magnetic resonance spectroscopy revealed that the mutant LTA contained a diacylglycerol anchor instead of the glycolipid, whereas the remaining part was similar to the wild-type polymer except that it was shorter. The LTA mutant strain revealed no major changes in patterns of cell wall proteins or autolytic enzymes compared with the parental strain indicating that LTA may be less important in S. aureus protein attachment than previously thought. However, the autolytic activity of the mutant was strongly reduced demonstrating a role of LTA in controlling autolysin activity. Moreover, the hydrophobicity of the LTA mutant was altered and its ability to form biofilms on plastic was completely abrogated indicating a profound impact of LTA on physicochemical properties of bacterial surfaces. We propose to consider LTA and its biosynthetic enzymes as targets for new antibiofilm strategies. Blackwell Publishing Ltd 2007-08 /pmc/articles/PMC2169524/ /pubmed/17640274 http://dx.doi.org/10.1111/j.1365-2958.2007.05854.x Text en © 2007 The Authors; Journal compilation © 2007 Blackwell Publishing Ltd https://creativecommons.org/licenses/by/2.5/ Re-use of this article is permitted in accordance with the Creative Commons Deed, Attribution 2.5, which does not permit commercial exploitation.
spellingShingle Research Articles
Fedtke, Iris
Mader, Diana
Kohler, Thomas
Moll, Hermann
Nicholson, Graeme
Biswas, Raja
Henseler, Katja
Götz, Friedrich
Zähringer, Ulrich
Peschel, Andreas
A Staphylococcus aureus ypfP mutant with strongly reduced lipoteichoic acid (LTA) content: LTA governs bacterial surface properties and autolysin activity
title A Staphylococcus aureus ypfP mutant with strongly reduced lipoteichoic acid (LTA) content: LTA governs bacterial surface properties and autolysin activity
title_full A Staphylococcus aureus ypfP mutant with strongly reduced lipoteichoic acid (LTA) content: LTA governs bacterial surface properties and autolysin activity
title_fullStr A Staphylococcus aureus ypfP mutant with strongly reduced lipoteichoic acid (LTA) content: LTA governs bacterial surface properties and autolysin activity
title_full_unstemmed A Staphylococcus aureus ypfP mutant with strongly reduced lipoteichoic acid (LTA) content: LTA governs bacterial surface properties and autolysin activity
title_short A Staphylococcus aureus ypfP mutant with strongly reduced lipoteichoic acid (LTA) content: LTA governs bacterial surface properties and autolysin activity
title_sort staphylococcus aureus ypfp mutant with strongly reduced lipoteichoic acid (lta) content: lta governs bacterial surface properties and autolysin activity
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2169524/
https://www.ncbi.nlm.nih.gov/pubmed/17640274
http://dx.doi.org/10.1111/j.1365-2958.2007.05854.x
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