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Ron Wever

Showing results (1-10 of 31) with videos related to

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Journal of Inorganic Biochemistry|March 26, 2004
Inhibition of vanadium chloroperoxidase from the fungus Curvularia inaequalis by hydroxylamine, hydrazine and azide and inactivation by phosphateNaoko Tanaka, Ron Wever
Chemistry, an Asian Journal|June 2, 2017
Vanadium Chloroperoxidases: The Missing Link in the Formation of Chlorinated Compounds and Chloroform in the Terrestrial Environment?Ron Wever, Phil Barnett
Dalton Transactions (Cambridge, England : 2003)|May 10, 2013
The role of vanadium haloperoxidases in the formation of volatile brominated compounds and their impact on the environmentRon Wever, Michael A van der Horst
Methods in Enzymology|June 19, 2018
Marine Vanadium-Dependent Haloperoxidases, Their Isolation, Characterization, and ApplicationRon Wever, Bea E Krenn, Rokus Renirie
Biochemistry|January 1, 2008
Crystal structure of a trapped phosphate intermediate in vanadium apochloroperoxidase catalyzing a dephosphorylation reactionSandra de Macedo-Ribeiro, Rokus Renirie, Ron Wever, et al.
Journal of Inorganic Biochemistry|March 30, 2010
Vanadium K-edge XAS studies on the native and peroxo-forms of vanadium chloroperoxidase from Curvularia inaequalisRokus Renirie, John M Charnock, C David Garner, et al.
Journal of the American Chemical Society|April 10, 2015
⁵¹V NMR Crystallography of Vanadium Chloroperoxidase and Its Directed Evolution P395D/L241V/T343A Mutant: Protonation Environments of the Active SiteRupal Gupta, Guangjin Hou, Rokus Renirie, et al.
Phytochemistry|July 20, 2002
Expression of the vanadium-dependent bromoperoxidase gene from a marine macro-alga Corallina pilulifera in Saccharomyces cerevisiae and characterization of the recombinant enzymeTakashi Ohshiro, Wieger Hemrika, Toshiaki Aibara, et al.
Chemsuschem|April 21, 2017
Dissolving Lignin in Water through Enzymatic Sulfation with Aryl SulfotransferasePepijn Prinsen, Anand Narani, Aloysius F Hartog, et al.
The Journal of Organic Chemistry|July 29, 2006
Simple enzymatic in situ generation of dihydroxyacetone phosphate and its use in a cascade reaction for the production of carbohydrates: increased efficiency by phosphate cyclingTeunie van Herk, Aloysius F Hartog, Hans E Schoemaker, et al.
Pageof 4

Showing results (1-10 of 31) with videos related to

Sort By:
Pageof 4
Journal of Inorganic Biochemistry|March 26, 2004
Inhibition of vanadium chloroperoxidase from the fungus Curvularia inaequalis by hydroxylamine, hydrazine and azide and inactivation by phosphateNaoko Tanaka, Ron Wever
Chemistry, an Asian Journal|June 2, 2017
Vanadium Chloroperoxidases: The Missing Link in the Formation of Chlorinated Compounds and Chloroform in the Terrestrial Environment?Ron Wever, Phil Barnett
Dalton Transactions (Cambridge, England : 2003)|May 10, 2013
The role of vanadium haloperoxidases in the formation of volatile brominated compounds and their impact on the environmentRon Wever, Michael A van der Horst
Methods in Enzymology|June 19, 2018
Marine Vanadium-Dependent Haloperoxidases, Their Isolation, Characterization, and ApplicationRon Wever, Bea E Krenn, Rokus Renirie
Biochemistry|January 1, 2008
Crystal structure of a trapped phosphate intermediate in vanadium apochloroperoxidase catalyzing a dephosphorylation reactionSandra de Macedo-Ribeiro, Rokus Renirie, Ron Wever, et al.
Journal of Inorganic Biochemistry|March 30, 2010
Vanadium K-edge XAS studies on the native and peroxo-forms of vanadium chloroperoxidase from Curvularia inaequalisRokus Renirie, John M Charnock, C David Garner, et al.
Journal of the American Chemical Society|April 10, 2015
⁵¹V NMR Crystallography of Vanadium Chloroperoxidase and Its Directed Evolution P395D/L241V/T343A Mutant: Protonation Environments of the Active SiteRupal Gupta, Guangjin Hou, Rokus Renirie, et al.
Phytochemistry|July 20, 2002
Expression of the vanadium-dependent bromoperoxidase gene from a marine macro-alga Corallina pilulifera in Saccharomyces cerevisiae and characterization of the recombinant enzymeTakashi Ohshiro, Wieger Hemrika, Toshiaki Aibara, et al.
Chemsuschem|April 21, 2017
Dissolving Lignin in Water through Enzymatic Sulfation with Aryl SulfotransferasePepijn Prinsen, Anand Narani, Aloysius F Hartog, et al.
The Journal of Organic Chemistry|July 29, 2006
Simple enzymatic in situ generation of dihydroxyacetone phosphate and its use in a cascade reaction for the production of carbohydrates: increased efficiency by phosphate cyclingTeunie van Herk, Aloysius F Hartog, Hans E Schoemaker, et al.
Pageof 4