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Efficient Enzymatic Synthesis of Carbamates in Water Using Promiscuous Esterases/Acyltransferases
被引:3
|作者:
Meinert, Hannes
[1
]
Oehlschlaeger, Florian
[1
]
Cziegler, Clemens
[1
]
Rockstroh, Jan
[2
]
Marzuoli, Irene
[3
]
Bisagni, Serena
[3
]
Lalk, Michael
[2
]
Bayer, Thomas
[1
]
Iding, Hans
[3
]
Bornscheuer, Uwe T.
[1
]
机构:
[1] Univ Greifswald, Inst Biochem, Dept Biotechnol & Enzyme Catalysis, Felix Hausdorff Str 4, D-17487 Greifswald, Germany
[2] Univ Greifswald, Inst Biochem, Dept Cellular Biochem & Metabol, Felix Hausdorff Str 4, D-17487 Greifswald, Germany
[3] F Hoffmann La Roche Ltd, Proc Chem & Catalysis, Grenzacher Str 124, CH-4070 Basel, Switzerland
关键词:
Acyltransferase;
Amine;
Biocatalysis;
Carbamate;
Esterase;
CANDIDA-ANTARCTICA-LIPASE;
AMIDE BOND FORMATION;
PROTECTING-GROUP;
AMINES;
ACIDS;
REACTIVITY;
ESTERASE;
ACCESS;
D O I:
10.1002/anie.202405152
中图分类号:
O6 [化学];
学科分类号:
0703 ;
摘要:
Biocatalysis provides an attractive approach to facilitate synthetic reactions in aqueous media. Motivated by the discovery of promiscuous aminolysis activity of esterases, we exploited the esterase from Pyrobaculum calidifontis VA1 (PestE) for the synthesis of carbamates from different aliphatic, aromatic, and arylaliphatic amines and a set of carbonates such as dimethyl-, dibenzyl-, or diallyl carbonate. Thus, aniline and benzylamine derivatives, aliphatic and even secondary amines could be efficiently converted into the corresponding benzyloxycarbonyl (Cbz)- or allyloxycarbonyl (Alloc)-protected products in bulk water, with (isolated) yields of up to 99 %. Chemical synthesis performed under harsh reaction conditions often requires the need for protecting groups to prevent off-target reactions. While traditional chemical introduction of protecting groups disagrees with the principles of green chemistry, biocatalysis provides a promising alternative. Herein, we present an unprecedented enzymatic approach for the efficient synthesis of carbamate-protected amines in water achieving up to 99 % yield. image
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页数:6
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