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Temporin A and its retro-analogues: synthesis, conformational analysis and antimicrobial activities

✍ Scribed by Wojciech Kamysz; Beata Mickiewicz; Sylwia Rodziewicz-Motowidło; Katarzyna Greber; Marcin Okrój


Book ID
105360585
Publisher
John Wiley and Sons
Year
2006
Tongue
English
Weight
184 KB
Volume
12
Category
Article
ISSN
1075-2617

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✦ Synopsis


Temporin A (TA) is a hydrophobic peptide isolated from the skin of the European red frog Rana temporaria. Strong antimicrobial activity against gram-positive cocci and Candida, as well as its small molecular weight (10-13 aa residues), makes TA an interesting antimicrobial compound. However, its synthesis is rather problematic. Here, the synthesis of two retro-analogues of TA--retro-TA and (6-1)(7-13)-TA--is reported. The synthesis of retro-TA was performed without any problems, while during the synthesis of (6-1)(7-13)-TA problems similar to those encountered during the synthesis of TA were faced. Antimicrobial assays showed minimal inhibitory concentration (MIC) values of retro-TA to be, in most cases, only one dilution higher than those of original TA, but still remained relatively low. An analysis of the circular dichroism spectra of the peptides shows that TA and (6-1)(7-13)-TA adopt an alpha-helical structure in a hydrophobic environment, while retro-TA forms mainly unordered conformation under both hydrophobic and hydrophilic conditions. One can postulate that differences in conformation of the peptide chain might be responsible for the lower antimicrobial activity of retro-TA as compared to that of the parent molecule. In any case, retro-TA can be interesting owing to its simple and nonproblematic synthesis.


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Conformational solution studies of the a
✍ Wojciech Kamysz; Beata Mickiewicz; Katarzyna Greber; Sylwia Rodziewicz-MotowidŁo 📂 Article 📅 2007 🏛 John Wiley and Sons 🌐 English ⚖ 292 KB

## Abstract Temporin A (TA) is a small, basic and highly hydrophobic peptide, isolated from the skin of the European red frog, __Rana temporaria__. The TA (FLPLIGRVLSGIL‐NH~2~) displays a broad spectrum of anti‐microbial activity against Gram‐positive bacteria and fungi __Candida albicans__. In thi