Publication:
Development of Biotransamination Reactions towards the 3,4-Dihydro-2H-1,5-benzoxathiepin-3-amine Enantiomers

No Thumbnail Available

Date

2018-10-01

Authors

Gonzalez-Martinez, Daniel
Fernandez-Saez, Nerea
Cativiela, Carlos
Campos, Joaquin M.
Gotor-Fernandez, Vicente

Advisors

Journal Title

Journal ISSN

Volume Title

Publisher

Mdpi
Metrics
Google Scholar
Export

Research Projects

Organizational Units

Journal Issue

Abstract

The stereoselective synthesis of chiral amines is an appealing task nowadays. In this context, biocatalysis plays a crucial role due to the straightforward conversion of prochiral and racemic ketones into enantiopure amines by means of a series of enzyme classes such as amine dehydrogenases, imine reductases, reductive aminases and amine transaminases. In particular, the stereoselective synthesis of 1,5-benzoxathiepin-3-amines have attracted particular attention since they possess remarkable biological profiles; however, their access through biocatalytic methods is unexplored. Amine transaminases are applied herein in the biotransamination of 3,4-dihydro-2H-1,5-benzoxathiepin-3-one, finding suitable enzymes for accessing both target amine enantiomers in high conversion and enantiomeric excess values. Biotransamination experiments have been analysed, trying to optimise the reaction conditions in terms of enzyme loading, temperature and reaction times.

Description

MeSH Terms

DeCS Terms

CIE Terms

Keywords

amine transaminases, asymmetric synthesis, benzoxathiepins, biocatalysis, biotransamination, stereoselective synthesis, Efficient asymmetric-synthesis, Employing omega-transaminases, Optically-active amines, Imine reductases ireds, Chiral amines, 1,5-benzoxathiepin derivatives, Amination, Biocatalysis, Ketones, Reactivity

Citation