Publication | Closed Access
Synthesis and Biophysical Studies on 35‐Deoxy Amphotericin B Methyl Ester
47
Citations
102
References
2009
Year
Bioorganic ChemistryGlycobiologyOrganic ChemistryDeoxygenationChemistryChemical BiologyAmphotericin B CongenerPharmaceutical ChemistryMedicinal ChemistryAmphotericin BMolecular EditingBiochemistryBiophysical StudiesPharmacologyEnantioselective SynthesisAntifungal AgentNatural SciencesMedicineSynthetic ChemistryDrug Discovery
The use of molecular editing in the elucidation of the mechanism of action of amphotericin B is presented. A modular strategy for the synthesis of amphotericin B and its designed analogues is developed, which relies on an efficient gram-scale synthesis of various subunits of amphotericin B. A novel method for the coupling of the mycosamine to the aglycone was identified. The implementation of the approach has enabled the preparation of 35-deoxy amphotericin B methyl ester. Investigation of the antifungal activity and efflux-inducing ability of this amphotericin B congener provided new clues to the role of the 35-hydroxy group and is consistent with the involvement of double barrel ion channels in causing electrolyte efflux.
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