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Analytical Biochemistry|August 31, 2002
A continuous fluorescence assay for sulfhydryl oxidaseSonali Raje, Nicole M Glynn, Colin ThorpeThe Journal of Organic Chemistry|December 7, 2007
Mechanism of thiolate-disulfide interchange reactions in biochemistryRobert D Bach, Olga Dmitrenko, Colin ThorpeArchives of Biochemistry and Biophysics|March 4, 2014
Site-specific insertion of selenium into the redox-active disulfide of the flavoprotein augmenter of liver regenerationStephanie Schaefer-Ramadan, Colin Thorpe, Sharon RozovskyBiochemistry|February 15, 2007
Erv2p: characterization of the redox behavior of a yeast sulfhydryl oxidaseWenzhong Wang, Jakob R Winther, Colin ThorpeThe Journal of Organic Chemistry|October 5, 2007
Mechanism of SN2 disulfide bond cleavage by phosphorus nucleophiles. Implications for biochemical disulfide reducing agentsOlga Dmitrenko, Colin Thorpe, Robert D BachCancers|November 9, 2024
QSOX1 Modulates Glioblastoma Cell Proliferation and Migration In Vitro and Invasion In VivoReetika Dutt, Colin Thorpe, Deni S GalileoPlos One|November 28, 2017
Plant-type phytoene desaturase: Functional evaluation of structural implicationsJulian Koschmieder, Mirjam Fehling-Kaschek, Patrick Schaub, et al.Journal of Molecular Biology|November 26, 2002
Yeast D-amino acid oxidase: structural basis of its catalytic propertiesLoredano Pollegioni, Kay Diederichs, Gianluca Molla, et al.Biochimica Et Biophysica Acta|September 29, 2004
On the mechanism of Rhodotorula gracilis D-amino acid oxidase: role of the active site serine 335Angelo Boselli, Luciano Piubelli, Gianluca Molla, et al.Analytical Biochemistry|January 13, 2004
Structure-based design of a fluorimetric redox active peptide probeDaniel J Cline, Colin Thorpe, Joel P SchneiderPageof 9