Many bacteria and archaea produce the redox cofactor F420. F420 is structurally similar to the cofactors FAD and FMN but is catalytically more similar to NAD and NADP. These …
MJ Harriff, C McMurtrey, CA Froyd, H Jin… - Science …, 2018 - science.org
MR1-restricted T cells (MR1Ts) are a T cell subset that recognize and mediate host defense to a broad array of microbial pathogens, including respiratory pathogens (eg …
AN Butkevich, VN Belov, K Kolmakov… - … A European Journal, 2017 - Wiley Online Library
Hydroxylated rhodamines, carbopyronines, silico‐and germanorhodamines with absorption maxima in the range of 530–640 nm were prepared and applied in specific labeling of living …
T Pavlovska, D Král Lesný, E Svobodová… - … A European Journal, 2022 - Wiley Online Library
Deazaflavins are well suited for reductive chemistry acting via a consecutive photo‐induced electron transfer, in which their triplet state and semiquinone–the latter is formed from the …
The deazaflavin cofactor F420 is a low-potential, two-electron redox cofactor produced by some Archaea and Eubacteria that is involved in methanogenesis and methanotrophy …
D Last, M Hasan, L Rothenburger, D Braga… - Metabolic …, 2022 - Elsevier
Coenzyme F 420 is involved in bioprocesses such as biosynthesis of antibiotics by streptomycetes, prodrug activation in Mycobacterium tuberculosis, and methanogenesis in …
The asymmetric reduction of enoates, imines and ketones are among the most important reactions in biocatalysis. These reactions are routinely conducted using enzymes that use …
GT Höfler, E Fernández‐Fueyo, M Pesic… - …, 2018 - Wiley Online Library
A photoenzymatic NADH regeneration system was established. The combination of deazariboflavin as a photocatalyst with putidaredoxin reductase enabled the selective …
Developing treatments for antibiotic resistant bacterial infections is among the highest priority public health challenges worldwide. Tetracyclines, one of the most important classes …