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A Reductive Aminase Switches to Imine Reductase Mode for a Bulky Amine Substrate

[Image: see text] Imine reductases (IREDs) catalyze the asymmetric reduction of cyclic imines, but also in some cases the coupling of ketones and amines to form secondary amine products in an enzyme-catalyzed reductive amination (RedAm) reaction. Enzymatic RedAm reactions have typically used small h...

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Autores principales: Gilio, Amelia K., Thorpe, Thomas W., Heyam, Alex, Petchey, Mark R., Pogrányi, Balázs, France, Scott P., Howard, Roger M., Karmilowicz, Michael J., Lewis, Russell, Turner, Nicholas, Grogan, Gideon
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9903292/
https://www.ncbi.nlm.nih.gov/pubmed/36776386
http://dx.doi.org/10.1021/acscatal.2c06066
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author Gilio, Amelia K.
Thorpe, Thomas W.
Heyam, Alex
Petchey, Mark R.
Pogrányi, Balázs
France, Scott P.
Howard, Roger M.
Karmilowicz, Michael J.
Lewis, Russell
Turner, Nicholas
Grogan, Gideon
author_facet Gilio, Amelia K.
Thorpe, Thomas W.
Heyam, Alex
Petchey, Mark R.
Pogrányi, Balázs
France, Scott P.
Howard, Roger M.
Karmilowicz, Michael J.
Lewis, Russell
Turner, Nicholas
Grogan, Gideon
author_sort Gilio, Amelia K.
collection PubMed
description [Image: see text] Imine reductases (IREDs) catalyze the asymmetric reduction of cyclic imines, but also in some cases the coupling of ketones and amines to form secondary amine products in an enzyme-catalyzed reductive amination (RedAm) reaction. Enzymatic RedAm reactions have typically used small hydrophobic amines, but many interesting pharmaceutical targets require that larger amines be used in these coupling reactions. Following the identification of IR77 from Ensifer adhaerens as a promising biocatalyst for the reductive amination of cyclohexanone with pyrrolidine, we have characterized the ability of this enzyme to catalyze couplings with larger bicyclic amines such as isoindoline and octahydrocyclopenta(c)pyrrole. By comparing the activity of IR77 with reductions using sodium cyanoborohydride in water, it was shown that, while the coupling of cyclohexanone and pyrrolidine involved at least some element of reductive amination, the amination with the larger amines likely occurred ex situ, with the imine recruited from solution for enzyme reduction. The structure of IR77 was determined, and using this as a basis, structure-guided mutagenesis, coupled with point mutations selecting improving amino acid sites suggested by other groups, permitted the identification of a mutant A208N with improved activity for amine product formation. Improvements in conversion were attributed to greater enzyme stability as revealed by X-ray crystallography and nano differential scanning fluorimetry. The mutant IR77-A208N was applied to the preparative scale amination of cyclohexanone at 50 mM concentration, with 1.2 equiv of three larger amines, in isolated yields of up to 93%.
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spelling pubmed-99032922023-02-08 A Reductive Aminase Switches to Imine Reductase Mode for a Bulky Amine Substrate Gilio, Amelia K. Thorpe, Thomas W. Heyam, Alex Petchey, Mark R. Pogrányi, Balázs France, Scott P. Howard, Roger M. Karmilowicz, Michael J. Lewis, Russell Turner, Nicholas Grogan, Gideon ACS Catal [Image: see text] Imine reductases (IREDs) catalyze the asymmetric reduction of cyclic imines, but also in some cases the coupling of ketones and amines to form secondary amine products in an enzyme-catalyzed reductive amination (RedAm) reaction. Enzymatic RedAm reactions have typically used small hydrophobic amines, but many interesting pharmaceutical targets require that larger amines be used in these coupling reactions. Following the identification of IR77 from Ensifer adhaerens as a promising biocatalyst for the reductive amination of cyclohexanone with pyrrolidine, we have characterized the ability of this enzyme to catalyze couplings with larger bicyclic amines such as isoindoline and octahydrocyclopenta(c)pyrrole. By comparing the activity of IR77 with reductions using sodium cyanoborohydride in water, it was shown that, while the coupling of cyclohexanone and pyrrolidine involved at least some element of reductive amination, the amination with the larger amines likely occurred ex situ, with the imine recruited from solution for enzyme reduction. The structure of IR77 was determined, and using this as a basis, structure-guided mutagenesis, coupled with point mutations selecting improving amino acid sites suggested by other groups, permitted the identification of a mutant A208N with improved activity for amine product formation. Improvements in conversion were attributed to greater enzyme stability as revealed by X-ray crystallography and nano differential scanning fluorimetry. The mutant IR77-A208N was applied to the preparative scale amination of cyclohexanone at 50 mM concentration, with 1.2 equiv of three larger amines, in isolated yields of up to 93%. American Chemical Society 2023-01-12 /pmc/articles/PMC9903292/ /pubmed/36776386 http://dx.doi.org/10.1021/acscatal.2c06066 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Gilio, Amelia K.
Thorpe, Thomas W.
Heyam, Alex
Petchey, Mark R.
Pogrányi, Balázs
France, Scott P.
Howard, Roger M.
Karmilowicz, Michael J.
Lewis, Russell
Turner, Nicholas
Grogan, Gideon
A Reductive Aminase Switches to Imine Reductase Mode for a Bulky Amine Substrate
title A Reductive Aminase Switches to Imine Reductase Mode for a Bulky Amine Substrate
title_full A Reductive Aminase Switches to Imine Reductase Mode for a Bulky Amine Substrate
title_fullStr A Reductive Aminase Switches to Imine Reductase Mode for a Bulky Amine Substrate
title_full_unstemmed A Reductive Aminase Switches to Imine Reductase Mode for a Bulky Amine Substrate
title_short A Reductive Aminase Switches to Imine Reductase Mode for a Bulky Amine Substrate
title_sort reductive aminase switches to imine reductase mode for a bulky amine substrate
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9903292/
https://www.ncbi.nlm.nih.gov/pubmed/36776386
http://dx.doi.org/10.1021/acscatal.2c06066
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