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Enhanced diastereoselectivity in beta-mannopyranosylation through the use of sterically minimal propargyl ether protecting groups. | LitMetric

AI Article Synopsis

  • 2-O-Propargyl ethers improve the efficiency of beta-mannosylation reactions when used in conjunction with 4,6-O-benzylidene acetals, especially when the O3 protecting group is bulky.
  • The benefits arise from the propargyl ether's low steric bulk and moderate disarming characteristics, enhancing diastereoselectivity even with less bulky protecting groups like 3-O-benzyl ethers.
  • However, 3-O-propargyl ethers negatively affect stereoselectivity in these reactions for reasons that remain unexplained, and the deprotection process involves converting the propargyl ether to an allenyl ether before oxidative cleavage.

Article Abstract

[reaction: see text] 2-O-Propargyl ethers are shown to be advantageous in the 4,6-O-benzylidene acetal directed beta-mannosylation reaction. The effect is most pronounced when the O3 protecting group is a bulky silyl ether or a glycosidic bond; however, even with a 3-O-benzyl ether, the use of a 2-O-propargyl ether results in a significant increase in diastereoselectivity. The beneficial effect of the propargyl ether is thought to be a combination of its minimal steric bulk, as determined by a measurement of the steric A-value and of its moderately disarming nature, as reflected in the pKa of propargyl alcohol. Conversely, the application of a 3-O-propargyl ether in the benzylidene acetal directed mannosylation has a detrimental effect on stereoselectivity, for which no explanation is at present available. Deprotection is achieved by base-catalyzed isomerization of the propargyl ether group to the corresponding allenyl ether, followed by oxidative cleavage with N-methylmorpholine N-oxide and catalytic osmium tetroxide.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4664462PMC
http://dx.doi.org/10.1021/jo0526789DOI Listing

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