Gramicidin S is active against both gram‐positive and gram‐negative bacteria
Грамицидин S активен как против грамположительных, так и против грамотрицательных бактерий
1996-06-01
SCID: 54.1/fzv3hb4f
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D-Phe substitutions (D-His, D-Ser, D-Tyr, D-Asn)Gramicidin S (GS)broad-spectrum antibacterial activity (gram-positive and gram-negative)cyclic gramicidin S analogslinear gramicidin S analogs
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Abstract (AI)
Four linear and four cyclic analogs of gramicidin S (GS) in which D-Phe was replaced with either D-His, D-Ser, D-Tyr or D-Asn have been prepared by solid-phase peptide synthesis and characterized with respect to antibacterial, antifungal and hemolytic activity. Unlike previous reports, GS and a number of cyclic analogs were found to be active against gram-positive as well as gram-negative bacteria. GS showed MICs ranging from 3 to 12.5 micrograms/mL for gram-negative bacteria, compared to MICs of 3 micrograms/mL for gram-positive bacteria. Furthermore, these analogs were also found to exhibit antifungal activity. Unlike the cyclic analogs, all linear analogs were found to be inactive against a wide range of microorganisms tested, and showed low levels of hemolytic activity. The antibacterial activity was found to be highly dependent on the type of assay used, with solution-based assays showing greater activity against gram-negative bacteria than agar-based assays. The GS cyclic analogs were all less toxic than GS itself, with the analog containing the D-Phe to D-Tyr substitution showing the greatest activity of the synthetic analogs. Hemolytic activity in solution against human and sheep red blood cells paralleled antibiotic activity, with those peptides exhibiting greater antibiotic activity generally showing greater hemolytic activity. Membrane destabilization as monitored using the hydrophobic probe N-phenyl-1-naphthylamine was also found to parallel antibacterial and hemolytic activity of cyclic and linear analogs. These results indicate that GS and certain related analogs may have applications as broad-spectrum antibiotics and should be reevaluated for such purposes.
Key Findings
1
All synthesized cyclic analogs exhibited antifungal activity, whereas all linear analogs were inactive against a wide range of microorganisms.
2
Antibacterial and hemolytic activities correlated with membrane destabilization measured by N-phenyl-1-naphthylamine uptake, and activity depended on assay type (solution assays showed greater gram-negative activity than agar assays).
3
Cyclic GS analogs were less hemolytic/toxic than GS; the D-Phe→D-Tyr cyclic analog showed the greatest antibacterial activity among synthetic analogs.
4
GS MICs for gram-negative bacteria ranged from 3 to 12.5 µg/mL, while MIC for gram-positive bacteria was 3 µg/mL.
5
Gramicidin S (GS) and several cyclic analogs are active against both gram-positive and gram-negative bacteria, contrary to previous reports.
Research Object
Gramicidin S and its linear and cyclic analogs with D-Phe substitutions (D-His, D-Ser, D-Tyr, D-Asn)
Research Subject
Antibacterial (activity against gram-positive and gram-negative bacteria), antifungal and hemolytic activities, and membrane-destabilizing effects of these peptides, including dependence on peptide cyclization and assay format
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1996-06-01
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