scispace - formally typeset
Journal ArticleDOI

Alcohol Dehydrogenases and N-Heterocyclic Carbene Gold(I) Catalysts: Design of a Chemoenzymatic Cascade towards Optically Active β,β-Disubstituted Allylic Alcohols

Reads0
Chats0
TLDR
The combination of gold and enzyme catalysis is used in a two-step approach, including Meyer-Schuster rearrangement of a series of readily available propargylic alcohols followed by stereoselective bioreduction of the corresponding allylic ketone intermediates, to provide optically pure β,β-disubstituted allyl alcohols as mentioned in this paper.
Abstract
The combination of gold(I) and enzyme catalysis is used in a two-step approach, including Meyer-Schuster rearrangement of a series of readily available propargylic alcohols followed by stereoselective bioreduction of the corresponding allylic ketone intermediates, to provide optically pure β,β-disubstituted allylic alcohols. This cascade involves a gold N-heterocyclic carbene and an enzyme, demonstrating the compatibility of both catalyst types in aqueous medium under mild reaction conditions. The combination of [1,3-bis(2,6-diisopropylphenyl)imidazol-2-ylidene][bis(trifluoromethanesulfonyl)-imide]gold(I) (IPrAuNTf2 ) and a selective alcohol dehydrogenase (ADH-A from Rhodococcus ruber, KRED-P1-A12 or KRED-P3-G09) led to the synthesis of a series of optically active (E)-4-arylpent-3-en-2-ols in good yields (65-86 %). The approach was also extended to various 2-hetarylpent-3-yn-2-ol, hexynol, and butynol derivatives. The use of alcohol dehydrogenases of opposite selectivity led to the production of both allyl alcohol enantiomers (93->99 % ee) for a broad panel of substrates.

read more

Citations
More filters
Journal ArticleDOI

Enzymatic strategies for asymmetric synthesis

TL;DR: In this review, the major enzymatic strategies broadly applicable in the asymmetric synthesis of optically pure chiral compounds are presented, with a focus on the reactions developed within the past decade.
Journal ArticleDOI

Recent trends in synthetic enzymatic cascades promoted by alcohol dehydrogenases

TL;DR: A review of recent advances on alcohol dehydrogenases coupled in cascade reactions with other enzyme classes, chemocatalysts, or organocatalyst to obtain high value-added products can be found in this article.
Journal ArticleDOI

Where Chemocatalysis Meets Biocatalysis: In Water.

TL;DR: Chemoenzymatic catalysis, by definition, involves the merging of sequential reactions using both chemo-and biocatalysis, typically in a single reaction vessel as discussed by the authors .
Journal ArticleDOI

Unmasking the Hidden Carbonyl Group Using Gold(I) Catalysts and Alcohol Dehydrogenases: Design of a Thermodynamically-Driven Cascade toward Optically Active Halohydrins

TL;DR: A concurrent cascade combining the use of a gold N-heterocyclic carbene (NHC) and an alcohol dehydrogenase (ADH) is disclosed for the synthesis of highly valuable enantiopure halohydrins in an aqueous medium and under mild reaction conditions as mentioned in this paper .
Journal ArticleDOI

A Chemoenzymatic Cascade Combining a Hydration Catalyst with an Amine Dehydrogenase: Synthesis of Chiral Amines

TL;DR: In this paper , an encapsulated Au/carbene combined with a free amine dehydrogenase as a co-catalyst system was developed to enable an efficient hydration/amination enantioselective cascade process to be accomplished.
References
More filters
Journal ArticleDOI

Gold-Catalyzed Organic Reactions

TL;DR: Important vinylgold intermediates, the transmetalation from gold to other transition metals, the development of new ligands for gold catalysis, and significant contributions from computational chemistry are other crucial points for the field highlighted here.
Journal ArticleDOI

Catalytic Carbophilic Activation: Catalysis by Platinum and Gold π Acids

TL;DR: The ability of platinum and gold catalysts to effect powerful atom-economic transformations has led to a marked increase in their utilization and the application of platinum- and gold-catalyzed transformations in natural product synthesis is discussed.
Journal ArticleDOI

Gold(I)-Catalyzed Activation of Alkynes for the Construction of Molecular Complexity

TL;DR: Gold(I) complexes selectively activate π-bonds of alkenes in complex molecular settings, which has been attributed to relativistic effects as discussed by the authors, and are the most effective catalysts for the electrophilic activation of alkynes under homogeneous conditions.
Journal ArticleDOI

Gold-catalyzed nucleophilic cyclization of functionalized allenes: a powerful access to carbo- and heterocycles.

TL;DR: This account comprises gold-catalyzed cyclization reactions of allenes by attack of carbon or heteroatom nucleophiles, which are particularly well suited for the selective activation of allene in the presence of other reactive functionalities.
Related Papers (5)