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van Schie, M.M.C.H. (author), Kaczmarek, Alexander T. (author), Tieves, F. (author), Gomez de Santos, Patricia (author), Paul, C.E. (author), Arends, I.W.C.E. (author), Alcalde, Miguel (author), Schwarz, Günter (author), Hollmann, F. (author)
H<sub>2</sub>O<sub>2</sub> can be accepted by several peroxygenases as a clean oxidant, able to supply both the necessary electrons and oxygen atom at the same time. The biocatalysts, in turn, are able to catalyse an array of interesting oxygen insertion reactions at enantio- and regio-selectivities hard to attain with classical chemical...
journal article 2020
document
Gomez de Santos, Patricia (author), González-Benjumea, Alejandro (author), Fernandez-Garcia, Angela (author), Aranda, Carmen (author), Wu, Y. (author), But, A. (author), Molina-Espeja, Patricia (author), Zhang, W. (author), Hollmann, F. (author)
The hydroxylation of fatty acids is an appealing reaction in synthetic chemistry, although the lack of selective catalysts hampers its industrial implementation. In this study, we have engineered a highly regioselective fungal peroxygenase for the ω-1 hydroxylation of fatty acids with quenched stepwise over-oxidation. One single mutation near...
journal article 2023
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Tieves, F. (author), Willot, S.J. (author), van Schie, M.M.C.H. (author), Rauch, M.C.R. (author), Younes, S.H.H. (author), Zhang, W. (author), Dong, J. (author), Gomez de Santos, P. (author), Hollmann, F. (author)
An increasing number of biocatalytic oxidation reactions rely on H <sub>2</sub> O <sub>2</sub> as a clean oxidant. The poor robustness of most enzymes towards H <sub>2</sub> O <sub>2</sub> , however, necessitates more efficient systems for in situ H <sub>2</sub> O <sub>2</sub> generation. In analogy to the well-known formate dehydrogenase to...
journal article 2019
document
Gomez de Santos, P. (author), Cervantes, Fadia V. (author), Tieves, F. (author), Plou, Francisco J. (author), Hollmann, F. (author), Alcalde, Miguel (author)
By mimicking the role of human liver P450 monooxygenases, fungal unspecific peroxygenases (UPOs) can perform a range of highly selective oxyfunctionalization reactions on pharmacological compounds, including O-dealkylations and hydroxylations, thereby simulating drug metabolism. Here we have benchmarked human drug metabolite (HDM) synthesis...
journal article 2019
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Hobisch, Markus (author), Holtmann, Dirk (author), Gomez de Santos, Patricia (author), Alcalde, Miguel (author), Hollmann, F. (author), Kara, Selin (author)
Peroxygenases are an emerging new class of enzymes allowing selective oxyfunctionalisation reactions in a cofactor-independent way different from well-known P450 monooxygenases. Herein, we focused on recent developments from organic synthesis, molecular biotechnology and reaction engineering viewpoints that are devoted to bring these enzymes...
review 2021
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