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Xenobiotica; the Fate of Foreign Compounds in Biological Systems|September 5, 2012
Quantitation of UGT1A1 in human liver microsomes using stable isotope-labelled peptides and mass spectrometry based proteomic approachesChitra Sridar, Imad Hanna, Paul F HollenbergDrug Metabolism and Disposition: the Biological Fate of Chemicals|September 4, 2012
Bioactivation of the cancer chemopreventive agent tamoxifen to quinone methides by cytochrome P4502B6 and identification of the modified residue on the apoproteinChitra Sridar, Jaime D'Agostino, Paul F HollenbergNature Protocols|October 2, 2010
A quantitative high-throughput 96-well plate fluorescence assay for mechanism-based inactivators of cytochromes P450 exemplified using CYP2B6Cesar Kenaan, Haoming Zhang, Paul F HollenbergBiochemical and Biophysical Research Communications|September 15, 2005
Roles of the threonine 407, aspartic acid 417, and threonine 419 residues in P450 2B1 in metabolismChitra Sridar, Erin Harleton, Paul F HollenbergMethods in Molecular Biology (Clifton, N.J.)|March 12, 2013
High-throughput fluorescence assay for cytochrome P450 mechanism-based inactivatorsCesar Kenaan, Haoming Zhang, Paul F HollenbergDrug Metabolism and Disposition: the Biological Fate of Chemicals|April 1, 2018
Formation of Both Heme and Apoprotein Adducts Contributes to the Mechanism-Based Inactivation of Human CYP2J2 by 17α-EthynylestradiolHsia-Lien Lin, Haoming Zhang, Paul F HollenbergJournal of the American Chemical Society|February 3, 2005
P(450)/NADPH/O(2)- and P(450)/PhIO-catalyzed N-dealkylations are mechanistically distinctMehul N Bhakta, Paul F Hollenberg, Kandatege WimalasenaArchives of Biochemistry and Biophysics|December 5, 2002
Multiple mechanisms and multiple oxidants in P450-catalyzed hydroxylationsMartin Newcomb, Paul F Hollenberg, Minor J CoonBiochemistry|June 12, 2013
Role of the highly conserved threonine in cytochrome P450 2E1: prevention of H2O2-induced inactivation during electron transferYasushi Yoshigae, Ute M Kent, Paul F HollenbergDrug Metabolism and Disposition: the Biological Fate of Chemicals|December 6, 2005
Selective pathways for the metabolism of phencyclidine by cytochrome p450 2b enzymes: identification of electrophilic metabolites, glutathione, and N-acetyl cysteine adductsMohamad Shebley, Monica I Jushchyshyn, Paul F HollenbergPageof 11