Abstract

Calf uterine estrogen receptor was covalently labeled with [3H]tamoxifen aziridine during affinity chromatography purification. After carboxymethylation, affinity labeled receptor was digested with trypsin under limit conditions and the labeled peptides were fractionated by reversed-phase high performance liquid chromatography into one major and two minor components. Sequence analysis of the dominant labeled fragment indicated the facile cleavage of label during Edman degradation but identified two peptides, both derived from the extreme carboxyl terminus of the steroid-binding domain. The 17 residues of one peptide were fully conserved in all estrogen receptors. This fragment contained five nucleophilic amino acids and was considered as the more favored interaction site for tamoxifen aziridine. A corresponding region of the glucocorticoid receptor has recently been identified as one of three major contact sites for glucocorticoids (Carlstedt-Duke, J., Strömstedt, P.-E., Persson, B., Cederlund, E., Gustafsson, J.-A., and Jörnvall, H. (1988) J. Biol. Chem. 263, 6842-6846). A comparison of amino acid physical characteristics in the hormone-binding domains of human estrogen and glucocorticoid receptors demonstrated an excellent structural correlation between the two regions and delineated elements in the estrogen receptor which may be directly involved in estradiol binding.

Highlights

  • After carboxymethylation, affinitylabeled receptor was digested with trypsin under limit conditions and the labeled peptides were fractionated by reversed-phase high performance liquid chromatography into one major and two minor components

  • A comparison of amino acid physical characteristics in the hormonebinding domains of human estrogen and glucocorticoid receptors demonstrated an excellent structural correlation between the two regiaonnds delineated elements in the estrogen receptor which may be directly involved in estradiol binding

  • The amino acid sequences for estrogen receptors from a number of species have been derived from their corresponding receptor cDNAs [1,2,3,4,5,6]

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Summary

The InteractionSite for Tamoxifen Aziridinewith the Bovine Estrogen Receptor*

The 17 residues of one peptide were fully conserved in all estrogen receptors This fragment contained five nucleophilic amino acids and was considered as the more favored interaction site for tamoxifen aziridine. ’The abbreviations and trivial names used are: tamoxifen aziridine, (Z)-1-(4-[2-N-aziridinyl)ethoxy]phenyl]-l,2-diphenyl-l-butene; dexamethazone 21-mesylate, 1,4-pregnadien-9a-fluoro-l6a-methylll~,17a,21-triol-3,20-dion2e1-methylsulfonate; triamcinolone acetonide, 1,4-pregnadien-9a-fluoro-ll~,l6a,l7~,Zl-tetrol-3,2O-dione-l6, 17-acetonide; SDS, sodium dodecyl sulfate; SDS-PAGE, sodium dodecyl sulfate-polyacrylamide gel electrophoresis; HPLC, high performance liquid chromatography; hER,human estrogen receptor; bER, bovine estrogen receptor; PTH, phenylthiohydantoin; hsp 90, heat shock protein of M,= 90,000; TRTPCK, ~-l-(tosylamido)-2-.

- RESULTS
The affinity gel used in the above isolation experiments has
Evidence suggests thatthe highly selective coupling of
Findings
DISCUSSION
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