LAUSR.org creates dashboard-style pages of related content for over 1.5 million academic articles. Sign Up to like articles & get recommendations!

Expanding the Biocatalytic Toolbox with a New Type of ene/yne‐Reductase from Cyclocybe aegerita

Photo from wikipedia

This study introduces a new type of ene/yne‐reductase from Cyclocybe aegerita with a broad substrate scope including aliphatic and aromatic alkenes/alkynes from which aliphatic C8‐alkenones, C8‐alkenals and aromatic nitroalkenes were… Click to show full abstract

This study introduces a new type of ene/yne‐reductase from Cyclocybe aegerita with a broad substrate scope including aliphatic and aromatic alkenes/alkynes from which aliphatic C8‐alkenones, C8‐alkenals and aromatic nitroalkenes were the preferred substrates. By comparing alkenes and alkynes, a ∼2‐fold lower conversion towards alkynes was observed. Furthermore, it could be shown that the alkyne reduction proceeds via a slow reduction of the alkyne to the alkene followed by a rapid reduction to the corresponding alkane. An accumulation of the alkene was not observed. Moreover, a regioselective reduction of the double bond in α,β‐position of α,β,γ,δ‐unsaturated alkenals took place. This as well as the first biocatalytic reduction of different aliphatic and aromatic alkynes to alkanes underlines the novelty of this biocatalyst. Thus with this study on the new ene‐reductase CaeEnR1, a promising substrate scope is disclosed that describes conceivably a broad occurrence of such reactions within the chemical landscape.

Keywords: reduction; new type; reductase; type ene; ene yne; yne reductase

Journal Title: ChemCatChem
Year Published: 2021

Link to full text (if available)


Share on Social Media:                               Sign Up to like & get
recommendations!

Related content

More Information              News              Social Media              Video              Recommended



                Click one of the above tabs to view related content.