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Equatorial Anomeric Triflates from Mannuronic Acid Esters
77
Citations
18
References
2009
Year
Conformational MixtureEngineeringBiochemistryEquatorial TriflateEquatorial Anomeric TriflatesMannuronic Acid EstersOrganic ChemistryCarbohydrate-protein InteractionStereoselective SynthesisAsymmetric CatalysisSynthetic ChemistryEnantioselective SynthesisBiomolecular EngineeringGlycosylation
Activation of mannuronic acid esters leads to a conformational mixture of alpha-anomeric triflates, in which the equatorial triflate ((1)C(4) chair) is formed preferentially. This unexpected intermediate clearly opposes the anomeric effect and is mainly stabilized by the electron-withdrawing carboxylate function at C-5. Because the anomeric center carries a significant positive charge, the (1)C(4) mannopyranosyl chair approximates the favored (3)H(4) half-chair oxacarbenium ion conformation. The excellent beta-selectivity in glycosylations of mannuronates is postulated to originate from the cooperative action of the triflate counterion and the (stereo)electronic effects governing oxacarbenium ion stabilization in the transition state leading to the 1,2-cis product.
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