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enzyme is inhibited at concentrations of 0.1 microM
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IC50 value 2.1 ng/ml. All Candida species tested are well susceptible to aureobasidin A with MICs below 2 microg/ml
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IC50 value 2.5 ng/ml. All Candida species tested are well susceptible to aureobasidin A with MICs below 2 microg/ml
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IC50 value 2.6 ng/ml. Strain is intrinsically resistant to aureobasidin A (MIC above 50 microg/ml), but has IPC synthase activity sensitive to aureobasidin A
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IC50 value 3.4 ng/ml. All Candida species tested are well susceptible to aureobasidin A with MICs below 2 microg/ml
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inhibits Aur1, activates vacuolar acidification and strongly induces the cell wall integrity pathway
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strongly inhibits the activity of IPC synthase in wild-type, which leads to distinct changes in cell morphology, including the delay in conidial germination, excessive branching near the tip of the germ tube and mycelium, and the inhibition of the mycelium growth. Aureobasidin A prevents the infection of wild-type in tomato fruits via reducing oxalic acid secretion and the activity of cellulase and pectinase
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Inhibition of inositol phosphorylceramide synthase by aureobasidin A in Candida and Aspergillus species
2000
Zhong, W.; Jeffries, M.W.; Georgopapadakou, N.H.
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Inhibition of inositol phosphorylceramide synthase by the cyclic peptide aureobasidin A
2009
Aeed, P.A.; Young, C.L.; Nagiec, M.M.; Elhammer, A.P.
Antimicrob. Agents Chemother.
53
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Complex sphingolipid synthesis in plants Characterization of inositolphosphorylceramide synthase activity in bean microsomes
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Saccharomyces cerevisiae is dependent on vesicular traffic between the Golgi apparatus and the vacuole when inositolphosphorylceramide synthase aur1 is inactivated
2015
Voynova, N.; Roubaty, C.; Vazquez, H.; Mallela, S.; Ejsing, C.; Conzelmann, A.
Eukaryot. Cell
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Sphingolipid synthesis as a target for antifungal drugs. Complementation of the inositol phosphorylceramide synthase defect in a mutant strain of Saccharomyces cerevisiae by the AUR1 gene
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281
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Characteristics of inositol phosphorylceramide synthase and effects of aureobasidin A on growth and pathogenicity of Botrytis cinerea
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