Transfer of photosynthetic NADP+/NADPH recycling activity to a porous metal oxide for highly specific, electrochemically-driven organic synthesis
In a discovery of the transfer of chloroplast biosynthesis activity to an inorganic material, ferredoxin-NADP+ reductase (FNR), the pivotal redox flavoenzyme of photosynthetic CO2 assimilation, binds tightly within the pores of indium tin oxide (ITO) to produce an electrode for direct studies of the...
Автори: | Siritanaratkul, B, Megarity, C, Roberts, T, Samuels, T, Winkler, M, Warner, J, Happe, T, Armstrong, F |
---|---|
Формат: | Journal article |
Мова: | English |
Опубліковано: |
Royal Society of Chemistry
2017
|
Схожі ресурси
Схожі ресурси
-
The metabolites NADP+ and NADPH are the targets of the circadian protein Nocturnin (Curled)
за авторством: Michael A. Estrella, та інші
Опубліковано: (2019-05-01) -
Interactive biocatalysis achieved by driving enzyme cascades inside a porous conducting material
за авторством: Siritanaratkul, B, та інші
Опубліковано: (2024) -
SREBP modulates the NADP+/NADPH cycle to control night sleep in Drosophila
за авторством: Vittoria Mariano, та інші
Опубліковано: (2023-02-01) -
SIRT3 and GCN5L regulation of NADP+- and NADPH-driven reactions of mitochondrial isocitrate dehydrogenase IDH2
за авторством: Katarína Smolková, та інші
Опубліковано: (2020-05-01) -
NADP(H)-dependent biocatalysis without adding NADP(H)
за авторством: Herold, RA, та інші
Опубліковано: (2022)