2003
DOI: 10.1016/s0006-291x(03)00755-1
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Fungicidal effect of indolicidin and its interaction with phospholipid membranes

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Cited by 95 publications
(60 citation statements)
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“…Lee et al [40] reported that the fungicidal activity indolicidin involves disruption of the structure of cell membranes, via direct interaction with the lipid bilayers, in a salt-dependent and energy-independent manner. The ways in which different Schiff base compounds react with bacteria and fungi vary due to the difference in their structures.…”
Section: Resultsmentioning
confidence: 99%
“…Lee et al [40] reported that the fungicidal activity indolicidin involves disruption of the structure of cell membranes, via direct interaction with the lipid bilayers, in a salt-dependent and energy-independent manner. The ways in which different Schiff base compounds react with bacteria and fungi vary due to the difference in their structures.…”
Section: Resultsmentioning
confidence: 99%
“…Alignments of one of these peptides with the sequence of brevinin-1Sa also indicated high homology (252). However, other studies have shown that antifungal peptides vary substantially in sequence and structure, and peptides as structurally diverse as eucommia (with a five-disulfide motif) (105), the ␣-helical P18 (140), and the extended peptide indolicidin (142), as well as plant defensins and a coleopteran ␤-sheet peptide from Acrocinus longimanus (13), have all shown antifungal activity. Thus, like for antibacterial peptides, there are no obvious conserved structural domains that give rise to antifungal activity.…”
Section: Structural Requirements For Antifungal Peptidesmentioning
confidence: 95%
“…Lee et al used scanning electron microscopy observations to demonstrate morphological changes in response to the potent permeabilizing peptides pig myeloid antimicrobial peptide (PMAP-23) and melittin (143). They also presented data indicating that indolicidin exerts its fungicidal activity by disrupting the structure of the fungal cell membrane, in a salt-dependent and energy-independent fashion, via direct interactions with the lipid bilayer (142). This contrasts to the situation for bacteria, in which indolicidin, although membrane active, appears to penetrate cells and act on macromolecular synthesis (61,238).…”
Section: Mode Of Action Of Antifungal Peptidesmentioning
confidence: 99%
“…Так, выраженная антигрибковая активность показана для пептидов, имеющих совершенно разные структурные мотивы. Это относится к антигрибковому пептиду, выделенному из растения Eucommia ulmoides, содержащему 5 дисульфидных мостиков [76], пептиду Р18, имеющему a-спиральную структуру [77], "вытянутому" индолицидину [78] и b-складчатому колеоптерану (coleopteran) из Acrocinus longimanus [79].…”
Section: антимикробные пептиды с антигрибковой активностьюunclassified