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Molecular Design, Structural Analysis and Antifungal Activity of Derivatives of Peptide CGA-N46

Chromogranin A (CGA)-N46, a derived peptide of human chromogranin A, has antifungal activity. To further research the active domain of CGA-N46, a series of derivatives were designed by successively deleting amino acid from both terminus of CGA-N46, and the amino acid sequence of each derivative was...

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Autores principales: Li, Rui-Fang, Lu, Zhi-Fang, Sun, Ya-Nan, Chen, Shi-Hua, Yi, Yan-Jie, Zhang, Hui-Ru, Yang, Shuo-Ye, Yu, Guang-Hai, Huang, Liang, Li, Chao-Nan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer Berlin Heidelberg 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4982898/
https://www.ncbi.nlm.nih.gov/pubmed/27165480
http://dx.doi.org/10.1007/s12539-016-0163-x
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author Li, Rui-Fang
Lu, Zhi-Fang
Sun, Ya-Nan
Chen, Shi-Hua
Yi, Yan-Jie
Zhang, Hui-Ru
Yang, Shuo-Ye
Yu, Guang-Hai
Huang, Liang
Li, Chao-Nan
author_facet Li, Rui-Fang
Lu, Zhi-Fang
Sun, Ya-Nan
Chen, Shi-Hua
Yi, Yan-Jie
Zhang, Hui-Ru
Yang, Shuo-Ye
Yu, Guang-Hai
Huang, Liang
Li, Chao-Nan
author_sort Li, Rui-Fang
collection PubMed
description Chromogranin A (CGA)-N46, a derived peptide of human chromogranin A, has antifungal activity. To further research the active domain of CGA-N46, a series of derivatives were designed by successively deleting amino acid from both terminus of CGA-N46, and the amino acid sequence of each derivative was analyzed by bioinformatic software. Based on the predicted physicochemical properties of the peptides, including half-life time in mammalian reticulocytes (in vitro), yeast (in vivo) and E. coli (in vivo), instability index, aliphatic index and grand average of hydropathicity (GRAVY), the secondary structure, net charge, the distribution of hydrophobic residues and hydrophilic residues, the final derivatives CGA-N15, CGA-N16, CGA-N12 and CGA-N8 were synthesized by solid-phase peptide synthesis. The results of bioinformatic analysis showed that CGA-N46 and its derivatives were α-helix, neutral or weak positive charge, hydrophilic, and CGA-N12 and CGA-N8 were more stable than the other derivatives. The results of circular dichroism confirmed that CGA-N46 and its derived peptides displayed α-helical structure in an aqueous solution and 30 mM sodium dodecylsulfate, but α-helical contents decreased in hydrophobic lipid vesicles. CGA-N15, CGA-N16, CGA-N12 and CGA-N8 had higher antifungal activities than their mother peptide CGA-N46. Among of the derived peptides, CGA-N12 showed the least hemolytic activity. In conclusion, we have successfully identified the active domain of CGA-N46 with strong antifungal activity and weak hemolytic activity, which provides the possibility to develop a new class of antibiotics.
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spelling pubmed-49828982016-08-25 Molecular Design, Structural Analysis and Antifungal Activity of Derivatives of Peptide CGA-N46 Li, Rui-Fang Lu, Zhi-Fang Sun, Ya-Nan Chen, Shi-Hua Yi, Yan-Jie Zhang, Hui-Ru Yang, Shuo-Ye Yu, Guang-Hai Huang, Liang Li, Chao-Nan Interdiscip Sci Original Research Article Chromogranin A (CGA)-N46, a derived peptide of human chromogranin A, has antifungal activity. To further research the active domain of CGA-N46, a series of derivatives were designed by successively deleting amino acid from both terminus of CGA-N46, and the amino acid sequence of each derivative was analyzed by bioinformatic software. Based on the predicted physicochemical properties of the peptides, including half-life time in mammalian reticulocytes (in vitro), yeast (in vivo) and E. coli (in vivo), instability index, aliphatic index and grand average of hydropathicity (GRAVY), the secondary structure, net charge, the distribution of hydrophobic residues and hydrophilic residues, the final derivatives CGA-N15, CGA-N16, CGA-N12 and CGA-N8 were synthesized by solid-phase peptide synthesis. The results of bioinformatic analysis showed that CGA-N46 and its derivatives were α-helix, neutral or weak positive charge, hydrophilic, and CGA-N12 and CGA-N8 were more stable than the other derivatives. The results of circular dichroism confirmed that CGA-N46 and its derived peptides displayed α-helical structure in an aqueous solution and 30 mM sodium dodecylsulfate, but α-helical contents decreased in hydrophobic lipid vesicles. CGA-N15, CGA-N16, CGA-N12 and CGA-N8 had higher antifungal activities than their mother peptide CGA-N46. Among of the derived peptides, CGA-N12 showed the least hemolytic activity. In conclusion, we have successfully identified the active domain of CGA-N46 with strong antifungal activity and weak hemolytic activity, which provides the possibility to develop a new class of antibiotics. Springer Berlin Heidelberg 2016-05-10 2016 /pmc/articles/PMC4982898/ /pubmed/27165480 http://dx.doi.org/10.1007/s12539-016-0163-x Text en © The Author(s) 2016 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made.
spellingShingle Original Research Article
Li, Rui-Fang
Lu, Zhi-Fang
Sun, Ya-Nan
Chen, Shi-Hua
Yi, Yan-Jie
Zhang, Hui-Ru
Yang, Shuo-Ye
Yu, Guang-Hai
Huang, Liang
Li, Chao-Nan
Molecular Design, Structural Analysis and Antifungal Activity of Derivatives of Peptide CGA-N46
title Molecular Design, Structural Analysis and Antifungal Activity of Derivatives of Peptide CGA-N46
title_full Molecular Design, Structural Analysis and Antifungal Activity of Derivatives of Peptide CGA-N46
title_fullStr Molecular Design, Structural Analysis and Antifungal Activity of Derivatives of Peptide CGA-N46
title_full_unstemmed Molecular Design, Structural Analysis and Antifungal Activity of Derivatives of Peptide CGA-N46
title_short Molecular Design, Structural Analysis and Antifungal Activity of Derivatives of Peptide CGA-N46
title_sort molecular design, structural analysis and antifungal activity of derivatives of peptide cga-n46
topic Original Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4982898/
https://www.ncbi.nlm.nih.gov/pubmed/27165480
http://dx.doi.org/10.1007/s12539-016-0163-x
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