Vishnu_2022_Bioorg.Chem_120_105594

Reference

Title : Enzyme engineering improves catalytic efficiency and enantioselectivity of hydroxynitrile lyase for promiscuous retro-nitroaldolase activity - Vishnu_2022_Bioorg.Chem_120_105594
Author(s) : Vishnu Priya B , Sreenivasa Rao DH , Gilani R , Lata S , Rai N , Akif M , Kumar Padhi S
Ref : Bioorg Chem , 120 :105594 , 2022
Abstract :

Protein engineering to improve promiscuous catalytic activity is important for biocatalytic application of enzymes in green synthesis. We uncovered the significance of binding site residues in Arabidopsis thaliana hydroxynitrile lyase (AtHNL) for promiscuous retro-nitroaldolase activity. Engineering of AtHNL has improved enantioselective retro-nitroaldolase activity, a synthetically important biotransformation, for the production of enantiopure beta-nitroalcohols having absolute configuration opposite to that of the stereopreference of the HNL. The variant F179A has showns-s12 fold increased selectivity towards the retro-nitroaldol reaction over cyanogenesis, the natural activity of the parent enzyme. Screening of the two saturation libraries of Phe179 and Tyr14 revealed several variants with higher k(cat), while F179N showeds-s2.4-fold k(cat)/K(m) than the native enzyme towards retro-nitroaldol reaction. Variants F179N, F179M, F179W, F179V, F179I, Y14L, and Y14M have showns>s99% ee in the preparation of (S)-2-nitro-1-phenylethanol (NPE) from the racemic substrate, while F179N has shown the E value of 138 vs. 81 bysthe wild type. Our molecular docking and dynamics simulations (MDS) studies results provided insights into the molecular basis of higher enantioselectivity by the F179N toward the retro-nitroaldolase activity than the other mutants. Binding energy calculations also showed the higher negative binding free energy in the case of F179N-(R)-NPE compared to other complexes that support our experimental low K(m) by the F179N for NPE. A plausible retro-nitroaldol reaction mechanism was proposed based on the MDS study of enzyme-substrate interaction.

PubMedSearch : Vishnu_2022_Bioorg.Chem_120_105594
PubMedID: 35007952
Gene_locus related to this paper: arath-HNL

Related information

Gene_locus arath-HNL

Citations formats

Vishnu Priya B, Sreenivasa Rao DH, Gilani R, Lata S, Rai N, Akif M, Kumar Padhi S (2022)
Enzyme engineering improves catalytic efficiency and enantioselectivity of hydroxynitrile lyase for promiscuous retro-nitroaldolase activity
Bioorg Chem 120 :105594

Vishnu Priya B, Sreenivasa Rao DH, Gilani R, Lata S, Rai N, Akif M, Kumar Padhi S (2022)
Bioorg Chem 120 :105594