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Arginine homopeptide of 11 residues as a model of Ccell-penetrating peptides in the interaction with bacterial membranes

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Author
Aróstica, Mónica
Rojas, Roberto
Aguilar, Luis Felipe
Carvajal Rondanelli, Patricio.
Albericio, Fernando
Guzmán, Fanny
Cárdenas, Constanza
Publication data (Editorial):
MDPI
Subjects (Keywords):
Arginine homopeptide
Antibacterial assays
Model membrane interactions
Secondary structure PPII
Dicroísmo circular
Publication date:
2022
Abstract:
Cell-penetrating peptides rich in arginine are good candidates to be considered as antibac terial compounds, since peptides have a lower chance of generating resistance than commonly used antibiotics. Model homopeptides are a useful tool in the study of activity and its correlation with a secondary structure, constituting an initial step in the construction of functional heteropeptides. In this report, the 11-residue arginine homopeptide (R11) was used to determine its antimicrobial activity against Staphylococcus aureus and Escherichia coli and the effect on the secondary structure, caused by the substitution of the arginine residue by the amino acids Ala, Pro, Leu and Trp, using the scanning technique. As a result, most of the substitutions improved the antibacterial activity, and nine peptides were significantly more active than R11 against the two tested bacteria. The cell-penetrating characteristic of the peptides was verified by SYTOX green assay, with no disruption to the bacterial membranes. Regarding the secondary structure in four different media—PBS, TFE, E. coli membrane extracts and DMPG vesicles—the polyproline II structure, the one of the parent R11, was not altered by unique substitutions, although the secondary structure of the peptides was best defined in E. coli membrane extract. This work aimed to shed light on the behavior of the interaction model of penetrating peptides and bacterial membranes to enhance the development of functional heteropeptides.
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http://repositorio.udla.cl/xmlui/handle/udla/1429
https://www.mdpi.com/journal/membranes
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  • Investigación
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