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Max Willistein

Showing results (1-10 of 8) with videos related to

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Molecular Microbiology|February 22, 2020
Oxygen detoxification by dienoyl-CoA oxidase involving flavin/disulfide cofactorsGeorg Schmid, Marieke Scheffen, Max Willistein, et al.
Biochimica Et Biophysica Acta. Bioenergetics|January 18, 2021
Functional diversity of prokaryotic HdrA(BC) modules: Role in flavin-based electron bifurcation processes and beyondLena Appel, Max Willistein, Christiane Dahl, et al.
Microbial Cell Factories|January 20, 2024
Highly selective whole-cell 25-hydroxyvitamin D<sub>3</sub> synthesis using molybdenum-dependent C25-steroid dehydrogenase and cyclodextrin recyclingDennis Kosian, Max Willistein, Ralf Weßbecher, et al.
FEBS Letters|February 14, 2012
Asp563 of the horizontal helix of subunit NuoL is involved in proton translocation by the respiratory complex IStefan Steimle, Max Willistein, Patricia Hegger, et al.
Chembiochem : a European Journal of Chemical Biology|September 23, 2021
Structural Basis of Cyclic 1,3-Diene Forming Acyl-Coenzyme A DehydrogenasesJohannes W Kung, Anne-Katrin Meier, Max Willistein, et al.
Environmental Microbiology|July 29, 2017
Phthaloyl-coenzyme A decarboxylase from Thauera chlorobenzoica: the prenylated flavin-, K<sup>+</sup> - and Fe<sup>2+</sup> -dependent key enzyme of anaerobic phthalate degradationMario Mergelsberg, Max Willistein, Heike Meyer, et al.
Chemistry (Weinheim an Der Bergstrasse, Germany)|June 23, 2018
Enantioselective Enzymatic Naphthoyl Ring ReductionMax Willistein, Julian Haas, Jonathan Fuchs, et al.
Nature Communications|May 8, 2019
Low potential enzymatic hydride transfer via highly cooperative and inversely functionalized flavin cofactorsMax Willistein, Dominique F Bechtel, Christina S Müller, et al.
Pageof 1

Showing results (1-10 of 8) with videos related to

Sort By:
Pageof 1
Molecular Microbiology|February 22, 2020
Oxygen detoxification by dienoyl-CoA oxidase involving flavin/disulfide cofactorsGeorg Schmid, Marieke Scheffen, Max Willistein, et al.
Biochimica Et Biophysica Acta. Bioenergetics|January 18, 2021
Functional diversity of prokaryotic HdrA(BC) modules: Role in flavin-based electron bifurcation processes and beyondLena Appel, Max Willistein, Christiane Dahl, et al.
Microbial Cell Factories|January 20, 2024
Highly selective whole-cell 25-hydroxyvitamin D<sub>3</sub> synthesis using molybdenum-dependent C25-steroid dehydrogenase and cyclodextrin recyclingDennis Kosian, Max Willistein, Ralf Weßbecher, et al.
FEBS Letters|February 14, 2012
Asp563 of the horizontal helix of subunit NuoL is involved in proton translocation by the respiratory complex IStefan Steimle, Max Willistein, Patricia Hegger, et al.
Chembiochem : a European Journal of Chemical Biology|September 23, 2021
Structural Basis of Cyclic 1,3-Diene Forming Acyl-Coenzyme A DehydrogenasesJohannes W Kung, Anne-Katrin Meier, Max Willistein, et al.
Environmental Microbiology|July 29, 2017
Phthaloyl-coenzyme A decarboxylase from Thauera chlorobenzoica: the prenylated flavin-, K<sup>+</sup> - and Fe<sup>2+</sup> -dependent key enzyme of anaerobic phthalate degradationMario Mergelsberg, Max Willistein, Heike Meyer, et al.
Chemistry (Weinheim an Der Bergstrasse, Germany)|June 23, 2018
Enantioselective Enzymatic Naphthoyl Ring ReductionMax Willistein, Julian Haas, Jonathan Fuchs, et al.
Nature Communications|May 8, 2019
Low potential enzymatic hydride transfer via highly cooperative and inversely functionalized flavin cofactorsMax Willistein, Dominique F Bechtel, Christina S Müller, et al.
Pageof 1