[HTML][HTML] Harnessing noncanonical redox cofactors to advance synthetic assimilation of one-carbon feedstocks

E Orsi, JM Hernández-Sancho, MS Remeijer… - Current Opinion in …, 2024 - Elsevier
Highlights•We discuss the use of NCRCs for supporting one-carbon assimilation.•
Engineered one-carbon oxidizing enzymes can accept NCRCs.•NCRCs can lower the …

Design, construction, and application of noncanonical redox cofactor infrastructures

WB Black, S Perea, H Li - Current Opinion in Biotechnology, 2023 - Elsevier
Highlights•Noncanonical redox cofactors (NRCs) can overcome the limitations of natural
cofactors.•NRCs enable specific delivery of reducing power outside of biological …

H2-driven biocatalysis for flavin-dependent ene-reduction in a continuous closed-loop flow system utilizing H2 from water electrolysis

G Lim, D Calabrese, A Wolder, PRF Cordero… - Communications …, 2024 - nature.com
Despite the increasing demand for efficient and sustainable chemical processes, the
development of scalable systems using biocatalysis for fine chemical production remains a …

Controlled Biocatalytic Synthesis of a Metal Nanoparticle‐Enzyme Hybrid: Demonstration for Catalytic H2‐driven NADH Recycling

LBF Browne, T Sudmeier, MA Landis… - Angewandte Chemie …, 2024 - Wiley Online Library
Here we demonstrate the preparation of enzyme‐metal biohybrids of NAD+ reductase with
biocatalytically‐synthesised small gold nanoparticles (NPs,< 10 nm) and core‐shell gold …

l-amino acids affect the hydrogenase activity and growth of Ralstonia eutropha H16

M Iskandaryan, S Blbulyan, M Sahakyan, A Vassilian… - AMB Express, 2023 - Springer
Ralstonia eutropha H16 is a chemolithoautotrophic bacterium with O2-tolerant hydrogenase
(Hyds) enzymes. Hyds are expressed in the presence of gas mixtures (H2, O2, CO2) or …

[HTML][HTML] Biocatalytic cofactor regeneration for CO2 reduction: Integration of a hydrogenase and a formate dehydrogenase in H2-driven systems

M Groh, E Lettau, J Schoknecht, J Liedtke… - Journal of CO2 …, 2024 - Elsevier
Formate dehydrogenases catalyze the reversible oxidation of formate to carbon dioxide.
These enzymes play an important role in CO 2 reduction and serve as nicotinamide cofactor …

Loop 6 and the β‐hairpin flap are structural hotspots that determine cofactor specificity in the FMN‐dependent family of ene‐reductases

B Kerschbaumer, MG Totaro, M Friess… - The FEBS …, 2024 - Wiley Online Library
Flavin mononucleotide (FMN)‐dependent ene‐reductases constitute a large family of
oxidoreductases that catalyze the enantiospecific reduction of carbon–carbon double bonds …

Cofactor-independent, photoenzymatic, reductions with water mediated by rGQDs

R Sheldon, L Qiao, X Li, Y Jiang, Z Wang, W Ye… - 2025 - researchsquare.com
Enzymatic reductions catalyzed by reductases, such as aldo/ketoreductases (AKRs), imine
reductases, and ene reductases generally depend on the regeneration of nicotinamide …