One-pot, two-step cascade synthesis of naturally rare l-: Erythro (3 S,4 S) ketoses by coupling a thermostable transaminase and transketolase

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Abstract

An efficient simultaneous cascade of two enzymatic steps catalyzed by a thermostable transaminase and transketolase was performed at elevated temperatures allowing the synthesis of naturally rare l-erythro (3S,4S) ketoses. l-ribulose, 5-deoxy-l-ribulose, d-tagatose and l-psicose, which are highly valuable chiral building blocks and display prominent biological properties, were obtained on a preparative scale with excellent stereoselectivities and good yields. A thermostable transketolase from Geobacillus stearothermophilus catalyzed at high temperatures the stereospecific synthesis of l-erythro (3S,4S)-configured ketoses from (2S)-hydroxylated aldehydes and β-hydroxypyruvate in which the latter is generated in an unprecedented manner in situ from natural l-serine and pyruvate using a novel thermostable l-α-transaminase from the thermophilic bacterium Thermosinus carboxydivorans. Overall, this cascade synthesis prevents the thermal decomposition of the labile β-hydroxypyruvate and offers an efficient and environmentally friendly procedure.

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Lorillière, M., De Sousa, M., Bruna, F., Heuson, E., Gefflaut, T., De Berardinis, V., … Hecquet, L. (2017). One-pot, two-step cascade synthesis of naturally rare l-: Erythro (3 S,4 S) ketoses by coupling a thermostable transaminase and transketolase. Green Chemistry, 19(2), 424–435. https://doi.org/10.1039/c6gc02015a

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