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Opposite Enantioselectivity in the Bioreduction of ( Z)-β-Aryl-β-cyanoacrylates Mediated by the Tryptophan 116 Mutants of Old Yellow Enzyme 1: Synthetic Approach to ( R)- and ( S)-β-Aryl-γ-lactams.

Authors :
Brenna, Elisabetta
Crotti, Michele
Gatti, Francesco G.
Monti, Daniela
Parmeggiani, Fabio
Powell, Robert W.
Santangelo, Sara
Stewart, Jon D.
Source :
Advanced Synthesis & Catalysis; May2015, Vol. 357 Issue 8, p1849-1860, 12p
Publication Year :
2015

Abstract

The Trp 116 mutants of Old Yellow Enzyme 1 that catalyse the reduction of ( Z)-β-aryl-β-cyanoacrylates give the opposite enantioselectivity according to the nature of the amino acid in position 116. Small amino acids (e.g., alanine) make the substrate bind to the enzyme′s active site in a 'classical' orientation, affording the ( S)-enantiomer of the reduced product. When the size of the amino acid increases (e.g., leucine), a 'flipped' binding mode is adopted by the substrate, which is converted into the corresponding ( R)-derivative. With bulky amino acids (e.g., tryptophan in the wild-type) the reduction does not occur. The enantiomerically enriched cyanopropanoates thus prepared can be converted into the corresponding ( S)- and ( R)-β-aryl-γ-lactams, precursors of inhibitory neurotransmitters belonging to the class of γ-aminobutyric acids, by a simple functional group interconversion in a sequential one-pot procedure. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
16154150
Volume :
357
Issue :
8
Database :
Complementary Index
Journal :
Advanced Synthesis & Catalysis
Publication Type :
Academic Journal
Accession number :
102883958
Full Text :
https://doi.org/10.1002/adsc.201500206