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The Effect of Calcium and Halide Ions on the Gramicidin A Molecular State and Antimicrobial Activity

Gramicidin A (gA) forms several convertible conformations in different environments. In this study, we investigated the effect of calcium halides on the molecular state and antimicrobial activity of gramicidin A. The molecular state of gramicidin A is highly affected by the concentration of calcium...

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Autores principales: Carillo, Kathleen D., Lo, Chi-Jen, Tzou, Der-Lii M., Lin, Yi-Hung, Fang, Shang-Ting, Huang, Shu-Hsiang, Chen, Yi-Cheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7503548/
https://www.ncbi.nlm.nih.gov/pubmed/32867026
http://dx.doi.org/10.3390/ijms21176177
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author Carillo, Kathleen D.
Lo, Chi-Jen
Tzou, Der-Lii M.
Lin, Yi-Hung
Fang, Shang-Ting
Huang, Shu-Hsiang
Chen, Yi-Cheng
author_facet Carillo, Kathleen D.
Lo, Chi-Jen
Tzou, Der-Lii M.
Lin, Yi-Hung
Fang, Shang-Ting
Huang, Shu-Hsiang
Chen, Yi-Cheng
author_sort Carillo, Kathleen D.
collection PubMed
description Gramicidin A (gA) forms several convertible conformations in different environments. In this study, we investigated the effect of calcium halides on the molecular state and antimicrobial activity of gramicidin A. The molecular state of gramicidin A is highly affected by the concentration of calcium salt and the type of halide anion. Gramicidin A can exist in two states that can be characterized by circular dichroism (CD), mass, nuclear magnetic resonance (NMR) and fluorescence spectroscopy. In State 1, the main molecular state of gramicidin A is as a dimer, and the addition of calcium salt can convert a mixture of four species into a single species, which is possibly a left-handed parallel double helix. In State 2, the addition of calcium halides drives gramicidin A dissociation and denaturation from a structured dimer into a rapid equilibrium of structured/unstructured monomer. We found that the abilities of dissociation and denaturation were highly dependent on the type of halide anion. The dissociation ability of calcium halides may play a vital role in the antimicrobial activity, as the structured monomeric form had the highest antimicrobial activity. Herein, our study demonstrated that the molecular state was correlated with the antimicrobial activity.
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spelling pubmed-75035482020-09-23 The Effect of Calcium and Halide Ions on the Gramicidin A Molecular State and Antimicrobial Activity Carillo, Kathleen D. Lo, Chi-Jen Tzou, Der-Lii M. Lin, Yi-Hung Fang, Shang-Ting Huang, Shu-Hsiang Chen, Yi-Cheng Int J Mol Sci Article Gramicidin A (gA) forms several convertible conformations in different environments. In this study, we investigated the effect of calcium halides on the molecular state and antimicrobial activity of gramicidin A. The molecular state of gramicidin A is highly affected by the concentration of calcium salt and the type of halide anion. Gramicidin A can exist in two states that can be characterized by circular dichroism (CD), mass, nuclear magnetic resonance (NMR) and fluorescence spectroscopy. In State 1, the main molecular state of gramicidin A is as a dimer, and the addition of calcium salt can convert a mixture of four species into a single species, which is possibly a left-handed parallel double helix. In State 2, the addition of calcium halides drives gramicidin A dissociation and denaturation from a structured dimer into a rapid equilibrium of structured/unstructured monomer. We found that the abilities of dissociation and denaturation were highly dependent on the type of halide anion. The dissociation ability of calcium halides may play a vital role in the antimicrobial activity, as the structured monomeric form had the highest antimicrobial activity. Herein, our study demonstrated that the molecular state was correlated with the antimicrobial activity. MDPI 2020-08-27 /pmc/articles/PMC7503548/ /pubmed/32867026 http://dx.doi.org/10.3390/ijms21176177 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Carillo, Kathleen D.
Lo, Chi-Jen
Tzou, Der-Lii M.
Lin, Yi-Hung
Fang, Shang-Ting
Huang, Shu-Hsiang
Chen, Yi-Cheng
The Effect of Calcium and Halide Ions on the Gramicidin A Molecular State and Antimicrobial Activity
title The Effect of Calcium and Halide Ions on the Gramicidin A Molecular State and Antimicrobial Activity
title_full The Effect of Calcium and Halide Ions on the Gramicidin A Molecular State and Antimicrobial Activity
title_fullStr The Effect of Calcium and Halide Ions on the Gramicidin A Molecular State and Antimicrobial Activity
title_full_unstemmed The Effect of Calcium and Halide Ions on the Gramicidin A Molecular State and Antimicrobial Activity
title_short The Effect of Calcium and Halide Ions on the Gramicidin A Molecular State and Antimicrobial Activity
title_sort effect of calcium and halide ions on the gramicidin a molecular state and antimicrobial activity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7503548/
https://www.ncbi.nlm.nih.gov/pubmed/32867026
http://dx.doi.org/10.3390/ijms21176177
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