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Nine-Step Stereoselective Synthesis of Islatravir from Deoxyribose
28
Citations
25
References
2020
Year
Medicinal ChemistryBiosynthesisBioorganic ChemistryPotent HivBiochemistryEngineeringNatural SciencesBiocatalysisTerminal OlefinMolecular BiologyStereoselective SynthesisHivStereoselective Nine-step SynthesisNatural Product SynthesisAntiviral CompoundBiomolecular EngineeringNine-step Stereoselective Synthesis
A stereoselective nine-step synthesis of the potent HIV nucleoside reverse transcriptase translocation inhibitor (NRTTI) islatravir (EfdA, MK-8591) from 2-deoxyribose is described. Key findings include a diastereodivergent addition of an acetylide nucleophile to an enolizable ketone, a chemoselective ozonolysis of a terminal olefin and a biocatalytic glycosylation cascade that uses a unique strategy of byproduct precipitation to drive an otherwise-reversible transformation forward.
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