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Insect Biochemistry and Molecular Biology|December 24, 2011
Metabolism of glucosinolate-derived isothiocyanates to glutathione conjugates in generalist lepidopteran herbivoresKatharina Schramm, Daniel Giddings Vassão, Michael Reichelt, et al.Chembiochem : a European Journal of Chemical Biology|April 14, 2019
Synthesis and Biochemical Evaluation of an Artificial, Fluorescent Glucosinolate (GSL)Carina Patrizia Glindemann, Anita Backenköhler, Matthias Strieker, et al.The Plant Journal : for Cell and Molecular Biology|March 23, 2019
Structural diversification during glucosinolate breakdown: mechanisms of thiocyanate, epithionitrile and simple nitrile formationDaniela Eisenschmidt-Bönn, Nicola Schneegans, Anita Backenköhler, et al.Insect Biochemistry and Molecular Biology|July 13, 2020
Novel glucosinolate metabolism in larvae of the leaf beetle Phaedon cochleariaeJeanne Friedrichs, Rabea Schweiger, Svenja Geisler, et al.Plos One|November 6, 2018
Iron is a centrally bound cofactor of specifier proteins involved in glucosinolate breakdownAnita Backenköhler, Daniela Eisenschmidt, Nicola Schneegans, et al.Chembiochem : a European Journal of Chemical Biology|November 7, 2006
Glycine conjugates in a lepidopteran insect herbivore--the metabolism of benzylglucosinolate in the cabbage white butterfly, Pieris rapaeFredd Vergara, Ales Svatos, Bernd Schneider, et al.Frontiers in Plant Science|February 16, 2026
Biochemical characterization of two Brassica oleracea nitrile-specifier proteinsKudzai Gracious Mbudu, Katja Witzel, Ute Wittstock, et al.Plant Physiology|November 7, 2008
The genetic basis of constitutive and herbivore-induced ESP-independent nitrile formation in ArabidopsisMeike Burow, Anja Losansky, René Müller, et al.Journal of Chemical Ecology|September 13, 2008
Formation of simple nitriles upon glucosinolate hydrolysis affects direct and indirect defense against the specialist herbivore, Pieris rapaeRoland Mumm, Meike Burow, Gabriella Bukovinszkine'kiss, et al.Plant Molecular Biology|September 4, 2013
Molecular models and mutational analyses of plant specifier proteins suggest active site residues and reaction mechanismWolfgang Brandt, Anita Backenköhler, Eva Schulze, et al.Pageof 5