2007•Organic LettersRequires access

Mimicking Aldolases through Organocatalysis: syn-Selective Aldol Reactions with Protected Dihydroxyacetone

Naoto Utsumi, Masanori Imai, Fujie Tanaka, Sripada S. V. Ramasastry, Carlos F. Barbas

Open publisher page 104 citations

Abstract

A practical organocatalytic strategy designed to mimic the l-rhamnulose 1-phosphate and D-fructose 1,6-diphosphate aldolases has been developed and shown to be effective in the preparation of carbohydrates and polyol derivatives. Threonine-based catalysts facilitated the aldol reaction of protected dihydroxyacetone or protected hydroxacetone with a variety of aldehydes to provide syn-aldol products with good yields and ee's up to 98%.

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What this paper is about

A practical organocatalytic strategy designed to mimic the l-rhamnulose 1-phosphate and D-fructose 1,6-diphosphate aldolases has been developed and shown to be effective in the preparation of carbohydrates and polyol derivatives. Threonine-based catalysts facilitated the aldol reaction of protected dihydroxyacetone or protected hydroxacetone with a variety of aldehydes to provide syn-aldol products with good yields and ee's up to 98%.

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Available abstract

A practical organocatalytic strategy designed to mimic the l-rhamnulose 1-phosphate and D-fructose 1,6-diphosphate aldolases has been developed and shown to be effective in the preparation of carbohydrates and polyol derivatives. Threonine-based catalysts facilitated the aldol reaction of protected dihydroxyacetone or protected hydroxacetone with a variety of aldehydes to provide syn-aldol products with good yields and ee's up to 98%.

Key concepts: Aldol reaction, Dihydroxyacetone, Chemistry, Dihydroxyacetone phosphate, Organocatalysis, Aldolase A, Glyceraldehyde, Organic chemistry

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