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Effects of truncation of the peptide chain on the secondary structure and bioactivities of palmitoylated anoplin.

Authors :
Salas, Remmer L.
Garcia, Jan Kathryne D.L.
Miranda, Ana Carmela R.
Rivera, Windell L.
Nellas, Ricky B.
Sabido, Portia Mahal G.
Source :
Peptides. Jun2018, Vol. 104, p7-14. 8p.
Publication Year :
2018

Abstract

Anoplin (GLLKRIKTLL-NH 2 ) is of current interest due to its short sequence and specificity towards bacteria. Recent studies on anoplin have shown that truncation and acylation compromises its antimicrobial activity and specificity, respectively. In this study, truncated analogues (pal-ano-9 to pal-ano-5) of palmitoylated anoplin (pal-anoplin) were synthesized to determine the effects of C -truncation on its bioactivities. Moreover, secondary structure of each analogue using circular dichroism (CD) spectroscopy was determined to correlate with bioactivities. Interestingly, pal-anoplin, pal-ano-9 and pal-ano-6 were helical in water, unlike anoplin. In contrast, pal-ano-8, pal-ano-7 and pal-ano-5, with polar amino acid residues at the C -terminus, were random coil in water. Nevertheless, all the peptides folded into helical structures in 30% trifluoroethanol/water (TFE/H 2 O) except for the shortest analogue pal-ano-5. Hydrophobicity played a significant role in the enhancement of activity against bacteria E. coli and S. aureus as all lipopeptides including the random coil pal-ano-5 were more active than the parent anoplin. Meanwhile, the greatest improvement in activity against the fungus C. albicans was observed for pal-anoplin analogues (pal-ano-9 and pal-ano-6) that were helical in water. Although, hydrophobicity is a major factor in the secondary structure and antimicrobial activity, it appears that the nature of amino acids at the C -terminus also influence folding of lipopeptides in water and its antifungal activity. Moreover, the hemolytic activity of the analogues was found to correlate with hydrophobicity, except for the least hemolytic, pal-ano-5. Since most of the analogues are more potent and shorter than anoplin, they are promising drug candidates for further development. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
01969781
Volume :
104
Database :
Academic Search Index
Journal :
Peptides
Publication Type :
Academic Journal
Accession number :
129567872
Full Text :
https://doi.org/10.1016/j.peptides.2018.03.019