Dihydrogen‐driven NADPH recycling in imine reduction and P450‐catalyzed oxidations mediated by an engineered O2‐tolerant hydrogenase
The O2‐tolerant NAD+‐reducing hydrogenase (SH) from Ralstonia eutropha (Cupriavidus necator) has already been applied in vitro and in vivo for H2‐driven NADH recycling in coupled enzymatic reactions with various NADH‐dependent oxidoreductases. To expand the scope for application in NADPH‐dependent b...
主要な著者: | Preissler, J, Reeve, HA, Zhu, T, Nicholson, J, Urata, K, Lauterbach, L, Wong, LL, Vincent, KA, Lenz, O |
---|---|
フォーマット: | Journal article |
言語: | English |
出版事項: |
Wiley
2020
|
類似資料
-
A hydrogen-driven biocatalytic approach to recycling synthetic analogues of NAD(P)H
著者:: Reeve, HA, 等
出版事項: (2022) -
H₂-driven cofactor regeneration with NAD(P)⁺-reducing hydrogenases.
著者:: Lauterbach, L, 等
出版事項: (2013) -
A modular system for regeneration of NAD cofactors using graphite particles modified with hydrogenase and diaphorase moieties.
著者:: Reeve, H, 等
出版事項: (2012) -
H2-driven cofactor regeneration with NAD(P)+-reducing hydrogenases
著者:: Lauterbach, L, 等
出版事項: (2013) -
The Hydrogenase Subcomplex of the NAD(+)-Reducing [NiFe] Hydrogenase from Ralstonia eutropha - Insights into Catalysis and Redox Interconversions
著者:: Lauterbach, L, 等
出版事項: (2011)