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Quest for the Molecular Basis of Improved Selective Toxicity of All-Trans Isomers of Aromatic Heptaene Macrolide Antifungal Antibiotics.


ABSTRACT: Three aromatic heptaene macrolide antifungal antibiotics, Candicidin D, Partricin A (Gedamycin) and Partricin B (Vacidin) were subjected to controlled cis-trans→ all trans photochemical isomerization. The obtained all-trans isomers demonstrated substantially improved in vitro selective toxicity in the Candida albicans cells: human erythrocytes model. This effect was mainly due to the diminished hemotoxicity. The molecular modeling studies on interactions between original antibiotics and their photoisomers with ergosterol and cholesterol revealed some difference in free energy profiles of formation of binary antibiotic/sterol complexes in respective membrane environments. Moreover, different geometries of heptaene: sterol complexes and variations in polyene macrolide molecule alignment in cholesterol-and ergosterol-containing membranes were found. None of these effects are of the crucial importance for the observed improvement of selective toxicity of aromatic heptaene antifungals but each seems to provide a partial contribution.

SUBMITTER: Borzyszkowska-Bukowska J 

PROVIDER: S-EPMC8468583 | biostudies-literature | 2021 Sep

REPOSITORIES: biostudies-literature

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Quest for the Molecular Basis of Improved Selective Toxicity of <i>All-Trans</i> Isomers of Aromatic Heptaene Macrolide Antifungal Antibiotics.

Borzyszkowska-Bukowska Julia J   Górska Justyna J   Szczeblewski Paweł P   Laskowski Tomasz T   Gabriel Iwona I   Jurasz Jakub J   Kozłowska-Tylingo Katarzyna K   Szweda Piotr P   Milewski Sławomir S  

International journal of molecular sciences 20210918 18


Three aromatic heptaene macrolide antifungal antibiotics, Candicidin D, Partricin A (Gedamycin) and Partricin B (Vacidin) were subjected to controlled <i>cis-trans</i><i>→ all trans</i> photochemical isomerization. The obtained <i>all-trans</i> isomers demonstrated substantially improved in vitro selective toxicity in the <i>Candida albicans</i> cells: human erythrocytes model. This effect was mainly due to the diminished hemotoxicity. The molecular modeling studies on interactions between origi  ...[more]

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