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Phytochemistry|December 17, 2013
A young root-specific gene (ArMY2) from horseradish encoding a MYR II myrosinase with kinetic preference for the root-specific glucosinolate gluconasturtiinAndreas Loebers, Frieder Müller-Uri, Wolfgang KreisBiochimica Et Biophysica Acta|May 29, 2002
The barley Jip23b geneFrieder Müller-Uri, Verena Cameron-Mills, John MundyPhytochemistry|February 24, 2012
Vein Patterning 1-encoded progesterone 5β-reductase: activity-guided improvement of catalytic efficiencyPeter Bauer, Kristin Rudolph, Frieder Müller-Uri, et al.Phytochemistry|January 3, 2006
Molecular cloning and heterologous expression of progesterone 5beta-reductase from Digitalis lanata EhrhVanessa Herl, Gabriele Fischer, Frieder Müller-Uri, et al.Phytochemistry|February 12, 2014
Identification and stress-induced expression of three 3β-hydroxysteroid dehydrogenases from Erysimum crepidifolium Rchb. and their putative role in cardenolide biosynthesisJennifer Munkert, Mona Ernst, Frieder Müller-Uri, et al.Phytochemistry|July 20, 2011
Progesterone 5β-reductase of Erysimum crepidifolium: cDNA cloning, expression in Escherichia coli, and reduction of enones with the recombinant proteinJennifer Munkert, Peter Bauer, Edyta Burda, et al.Planta Medica|June 15, 2007
Delta 5-3beta-hydroxysteroid dehydrogenase (3 beta HSD) from Digitalis lanata. Heterologous expression and characterisation of the recombinant enzymeVanessa Herl, Jördis Frankenstein, Nadine Meitinger, et al.Planta Medica|July 22, 2006
Molecular cloning and expression of progesterone 5beta-reductase (5beta-POR) from Isoplexis canariensisVanessa Herl, Gabriele Fischer, Ralf Bötsch, et al.Acta Crystallographica. Section F, Structural Biology and Crystallization Communications|March 3, 2006
Crystallization and preliminary crystallographic analysis of selenomethionine-labelled progesterone 5beta-reductase from Digitalis lanata EhrhClaudia Egerer-Sieber, Vanessa Herl, Frieder Müller-Uri, et al.Journal of Biomolecular Structure & Dynamics|October 13, 2015
Progesterone 5β-reductases/iridoid synthases (PRISE): gatekeeper role of highly conserved phenylalanines in substrate preference and trapping is supported by molecular dynamics simulationsJan Petersen, Harald Lanig, Jennifer Munkert, et al.Pageof 2