Active site mutations of F420-dependent alkene reductases reverse stereoselectivity
Kang, S. W.; Antoney, J. P.; Lupton, D. W.; Speight, R.; Scott, C.; Jackson, C. J.
Show abstract
Ene-reductases from the Flavin/Deazaflavin Oxidoreductase (FDOR) family have potential value in biocatalysis as they typically exhibit complementary stereoselectivity to the widely utilized Old Yellow Enzyme (OYE) family, yet they are comparatively poorly understood at a mechanistic level. Here, we use a rational design approach to generate a library of 46 active site mutants of two FDORs from Mycobacterium smegmatis and examine the effects on conversion and stereoselectivity against a panel of substrates. Analysis of the effects of these mutations on stereoselectivity across all substrates revealed that the catalytic mechanism is highly sensitive to the polarity of the immediate active site. A conserved active site tyrosine in these enzymes, which does not serve as the proton donor, strongly affects stereochemical outcomes with C- (but not C{beta}-) substituted substrates. Notably, a Tyr-Met mutation at this position reversed the diastereomeric excess (de) with (R)-carvone from 85.3% to -17.3% (cis/trans). Additionally, this mutation significantly increases activity with (1S)- verbenone. Finally, we show that the altered stereoselectivity is not due to a "flipped" substrate binding mode in these mutants, but rather that the hydrogenation mode is altered to favor syn relative to anti addition. These results show that the FDORs are highly engineerable and that, despite their superficial similarity, the OYE and FDOR families differ in crucial mechanistic aspects.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Unexpected Activities of CYP152 Peroxygenases towards Non-carboxylic Substrates Reveal Novel Substrate Recognition Mechanism and Catalytic Versatility 96%
- The sandarazols are cryptic and structurally unique plasmid encoded toxins from a rare myxobacterium 95%
- The Kinetics of Carbon-Carbon-Bond Formation in Metazoan Fatty Acid Synthase and its Impact on Product Fidelity 95%
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
- An Artificial Cofactor catalyzing the Baylis-Hillman Reaction using Designed Streptavidin as Protein Host 95%
- CYP154C5 regioselectivity in steroid hydroxylation explored by substrate and protein engineering 94%
- Characterization of novel competitive inhibitors of P. falciparum cGMP-dependent protein kinase 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.