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Synthesis and polymerization of benzyl (3R,4R)-3-methylmalolactonate via enzymatic preparation of the chiral precursor

✍ Scribed by Marie-Maud Bear; Claire Monne; Daniel Robic; Geneviève Campion; Valérie Langlois; Alain Rimbault; Richard Bourbouze; Philippe Guerin


Book ID
101295663
Publisher
John Wiley and Sons
Year
1998
Tongue
English
Weight
158 KB
Volume
10
Category
Article
ISSN
0899-0042

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✦ Synopsis


␤-methylaspartate ammonia-lyase, EC 4.3.1.2, (␤-methylaspartase) from Clostridium tetanomorphum was used to produce a 40/60 molar ratio of (2S,3R) and (2S,3S)-3-methylaspartic acids, 2a and 2b, respectively, from mesaconic acid 1 as substrate, on a large scale. To prepare (3R,4R)-3-methyl-4-(benzyloxycarbonyl)-2-oxetanone (benzyl 3-methylmalolactonate) 6, 2a and 2b were transformed, in the first step, into 2-bromo-3-methylsuccinic acids 3a and 3b and separated. After three further steps, (2S,3S)-3a yielded the ␣,␤-substituted ␤-lactone (3R,4R) 6 with a very high diastereoisomeric excess (>95% by chiral gas chromatography). The corresponding crystalline polymer, poly[benzyl ␤-(2R,3S)-3-methylmalate] 8, prepared by an anionic ring opening polymerization, was highly isotactic as determined by 13 C NMR. Catalytic hydrogenolysis of lactone 6 yielded (3R,4R)-3-methyl-4-carboxy-2-oxetanone (3-methylmalolactonic acid) 7, to which reactive, chiral, or bioactive molecules can be attached through ester bonds leading to polymers with possible therapeutic applications. Because of the ability of ␤-methylaspartase to catalyse both syn-and anti-elimination of ammonia from (2S,3RS)-3-methylaspartic acid 2ab at different rates, the (2S,3R)-stereoisomer 2a was retained and isolated for further reactions. These results permit the use of the chemoenzymatic route for the preparation of both optically active and racemic polymers of 3-methylmalic acid with well-defined enantiomeric and diastereoisomeric compositions.


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Synthesis of (3R,4R)-3-Amino-4-hydroxyhe
✍ Müller, Alexander ;Takyar, Dinesh K. ;Witt, Sandra ;König, Wilfried A. 📂 Article 📅 1993 🏛 John Wiley and Sons 🌐 English ⚖ 537 KB

## Abstract (3__R__,4__R__)‐3‐Amino‐4‐hydroxyhexahydroazepine (2), the optically active constituent of the antifungal antibiotic ophiocordin (1), was prepared in a multistep synthesis starting from D‐serine. The absolute configuration was unambigously assigned by a comparison of the synthesized ste