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Journal of Medicinal Chemistry|July 1, 1986
Structure-activity study of 6-substituted 2-pyranones as inactivators of alpha-chymotrypsinW A Boulanger, J A KatzenellenbogenBioconjugate Chemistry|November 17, 1998
Protein and peptide labeling with (cyclopentadienyl)tricarbonyl rhenium and technetiumT W Spradau, J A KatzenellenbogenBiochemistry|March 25, 1986
Halo enol lactones: studies on the mechanism of inactivation of alpha-chymotrypsinS B Daniels, J A KatzenellenbogenJournal of Medicinal Chemistry|August 1, 1986
5-(Halomethyl)-2-pyranones as irreversible inhibitors of alpha-chymotrypsinW A Boulanger, J A KatzenellenbogenMolecular Pharmacology|September 1, 1987
Fluorinated androgens and progestins: molecular probes for androgen and progesterone receptors with potential use in positron emission tomographyS J Brandes, J A KatzenellenbogenNuclear Medicine and Biology|August 1, 1997
Technetium-99m-labeled receptor-specific small-molecule radiopharmaceuticals: recent developments and encouraging resultsR K Hom, J A KatzenellenbogenBiochemical and Biophysical Research Communications|August 15, 1991
Halo enol lactone inhibitors of chymotrypsin: burst kinetics and enantioselectivity of inactivationD J Baek, J A KatzenellenbogenBioorganic & Medicinal Chemistry Letters|January 5, 1999
Ligands for the estrogen receptor, containing cyclopentadienyltricarbonylrhenium unitsT W Spradau, J A KatzenellenbogenJournal of Medicinal Chemistry|September 1, 1988
Optimizing of 2,3-diarylindenes as fluorescent estrogens: variation of the acceptor group, ortho substitution of the 2-ring, and C-1 methylationG M Anstead, J A KatzenellenbogenChemistry & Biology|July 1, 1996
Nuclear hormone receptors: ligand-activated regulators of transcription and diverse cell responsesJ A Katzenellenbogen, B S KatzenellenbogenPageof 21