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Manipulation of charged residues within the two‐peptide lantibiotic lacticin 3147

Lantibiotics are antimicrobial peptides which contain a high percentage of post‐translationally modified residues. While most attention has been paid to the role of these critical structural features, evidence continues to emerge that charged amino acids also play a key role in these peptides. Here...

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Autores principales: Deegan, Lucy H., Suda, Srinivas, Lawton, Elaine M., Draper, Lorraine A., Hugenholtz, Floor, Peschel, Andreas, Hill, Colin, Cotter, Paul D., Ross, R. Paul
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3836577/
https://www.ncbi.nlm.nih.gov/pubmed/21255322
http://dx.doi.org/10.1111/j.1751-7915.2009.00145.x
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author Deegan, Lucy H.
Suda, Srinivas
Lawton, Elaine M.
Draper, Lorraine A.
Hugenholtz, Floor
Peschel, Andreas
Hill, Colin
Cotter, Paul D.
Ross, R. Paul
author_facet Deegan, Lucy H.
Suda, Srinivas
Lawton, Elaine M.
Draper, Lorraine A.
Hugenholtz, Floor
Peschel, Andreas
Hill, Colin
Cotter, Paul D.
Ross, R. Paul
author_sort Deegan, Lucy H.
collection PubMed
description Lantibiotics are antimicrobial peptides which contain a high percentage of post‐translationally modified residues. While most attention has been paid to the role of these critical structural features, evidence continues to emerge that charged amino acids also play a key role in these peptides. Here 16 ‘charge’ mutants of the two‐peptide lantibiotic lacticin 3147 [composed of Ltnα (2+, 2−) and Ltnβ (2+)] were constructed which, when supplemented with previously generated peptides, results in a total bank of 23 derivatives altered in one or more charged residues. When examined individually, in combination with a wild‐type partner or, in some instances, in combination with one another, these mutants reveal the importance of charge at specific locations within Ltnα and Ltnβ, confirm the critical role of the negatively charged glutamate residue in Ltnα and facilitate an investigation of the contribution of positively charged residues to the cationic Ltnβ. From these investigations it is also apparent that the relative importance of the overall charge of lacticin 3147 varies depending on the target bacteria and is most evident when strains with more negatively charged cell envelopes are targeted. These studies also result in, for the first time, the creation of a derivative of a lacticin 3147 peptide (LtnβR27A) which displays enhanced specific activity.
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spelling pubmed-38365772014-02-12 Manipulation of charged residues within the two‐peptide lantibiotic lacticin 3147 Deegan, Lucy H. Suda, Srinivas Lawton, Elaine M. Draper, Lorraine A. Hugenholtz, Floor Peschel, Andreas Hill, Colin Cotter, Paul D. Ross, R. Paul Microb Biotechnol Research Articles Lantibiotics are antimicrobial peptides which contain a high percentage of post‐translationally modified residues. While most attention has been paid to the role of these critical structural features, evidence continues to emerge that charged amino acids also play a key role in these peptides. Here 16 ‘charge’ mutants of the two‐peptide lantibiotic lacticin 3147 [composed of Ltnα (2+, 2−) and Ltnβ (2+)] were constructed which, when supplemented with previously generated peptides, results in a total bank of 23 derivatives altered in one or more charged residues. When examined individually, in combination with a wild‐type partner or, in some instances, in combination with one another, these mutants reveal the importance of charge at specific locations within Ltnα and Ltnβ, confirm the critical role of the negatively charged glutamate residue in Ltnα and facilitate an investigation of the contribution of positively charged residues to the cationic Ltnβ. From these investigations it is also apparent that the relative importance of the overall charge of lacticin 3147 varies depending on the target bacteria and is most evident when strains with more negatively charged cell envelopes are targeted. These studies also result in, for the first time, the creation of a derivative of a lacticin 3147 peptide (LtnβR27A) which displays enhanced specific activity. Blackwell Publishing Ltd 2010-03 2010-02-22 /pmc/articles/PMC3836577/ /pubmed/21255322 http://dx.doi.org/10.1111/j.1751-7915.2009.00145.x Text en Copyright © 2009 The Authors. Journal compilation © 2009 Society for Applied Microbiology and Blackwell Publishing Ltd
spellingShingle Research Articles
Deegan, Lucy H.
Suda, Srinivas
Lawton, Elaine M.
Draper, Lorraine A.
Hugenholtz, Floor
Peschel, Andreas
Hill, Colin
Cotter, Paul D.
Ross, R. Paul
Manipulation of charged residues within the two‐peptide lantibiotic lacticin 3147
title Manipulation of charged residues within the two‐peptide lantibiotic lacticin 3147
title_full Manipulation of charged residues within the two‐peptide lantibiotic lacticin 3147
title_fullStr Manipulation of charged residues within the two‐peptide lantibiotic lacticin 3147
title_full_unstemmed Manipulation of charged residues within the two‐peptide lantibiotic lacticin 3147
title_short Manipulation of charged residues within the two‐peptide lantibiotic lacticin 3147
title_sort manipulation of charged residues within the two‐peptide lantibiotic lacticin 3147
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3836577/
https://www.ncbi.nlm.nih.gov/pubmed/21255322
http://dx.doi.org/10.1111/j.1751-7915.2009.00145.x
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