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Willot, S.J. (author), Fernandez Fueyo, E. (author), Tieves, F. (author), Pesic, M. (author), Alcalde, Miguel (author), Arends, I.W.C.E. (author), Park, Chan Beum (author), Hollmann, F. (author)
Peroxygenases require a controlled supply of H<sub>2</sub>O<sub>2</sub> to operate efficiently. Here, we propose a photocatalytic system for the reductive activation of ambient O<sub>2</sub> to produce H<sub>2</sub>O<sub>2</sub> which uses the energy provided by visible light more efficiently based on the combination of wavelength...
journal article 2019
document
Pedroso de Almeida, T. (author), van Schie, M.M.C.H. (author), Ma, A. (author), Tieves, F. (author), Younes, S.H.H. (author), Fernandez Fueyo, E. (author), Arends, I.W.C.E. (author), Riul, A. (author), Hollmann, F. (author)
The selective oxidation of trans-2-hexen-1-ol to the corresponding aldehyde using a recombinant aryl alcohol oxidase from Pleurotus eryngii (PeAAOx) is reported. Especially using the two liquid phase system to overcome solubility and product inhibition issues enabled to achieve more than 2.200.000 catalytic turnovers for the production enzyme...
journal article 2019
document
Höfler, G.T. (author), Fernandez Fueyo, E. (author), Pesic, M. (author), Younes, S.H.H. (author), Choi, Eun Gyu (author), Kim, Yong H. (author), Urlacher, Vlada B. (author), Arends, I.W.C.E. (author), Hollmann, F. (author)
A photoenzymatic NADH regeneration system was established. The combination of deazariboflavin as a photocatalyst with putidaredoxin reductase enabled the selective reduction of NAD<sup>+</sup> into the enzyme-active 1,4-NADH to promote an alcohol dehydrogenase catalysed stereospecific reduction reaction. The catalytic turnover of all the...
journal article 2018
document
Hiseni, A. (author), Otten, L.G. (author), Arends, I.W.C.E. (author)
Carotenoid 1,2-hydratases (CrtC) catalyze the selective addition of water to an isolated carbon–carbon double bond. Although their involvement in the carotenoid biosynthetic pathway is well understood, little is known about the mechanism by which these hydratases transform carotenoids such as lycopene into the corresponding hydroxyl compounds....
journal article 2015
document
De Torres, M. (author), Dimroth, J. (author), Arends, I.W.C.E. (author), Keilitz, J. (author), Hollmann, F. (author)
Rh(III)-TsDPEN, an immobilized analog of the well-known [Cp*Rh(bpy)(H2O)]2+ was evaluated as a heterogeneous, recyclable regeneration catalyst for reduced oxidoreductase cofactors [NAD(P)H]. Repeated use of this catalyst was established and the catalytic properties were initially investigated. Apparently, Rh(III)-TsDPEN is prone to severe...
journal article 2012
document
Hollmann, F. (author), Arends, I.W.C.E. (author)
Biocatalysis is propagating into practically every area of organic chemistry, amongst them radical polymerizations. A review of the recent developments of this dynamic and quickly evolving area of research is presented together with a critical evaluation of its potential to yield novel polymers and/or environmentally more benign synthetic...
journal article 2012
document
Hiseni, A. (author), Arends, I.W.C.E. (author), Otten, L.G. (author)
Two carotenoid 1,2-hydratase (CrtC) genes from the photosynthetic bacteria Rubrivivax gelatinosus and Thiocapsa roseopersicina were cloned and expressed in Escherichia coli in an active form and purified by affinity chromatography. The biochemical properties of the recombinant enzymes and their substrate specificities were studied. The purified...
journal article 2011
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