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A potent and selective photoaffinity probe for the anti-estrogen binding site of rat liver
M Poirot1, C Chailleux, A Fargin
1Laboratoire d'Endocrinologie Expérimentale, CHU Rangueil, Toulouse, France.
Abstract:
The anti-estrogen binding site (ABS) is an apparently ubiquitous component of cells that has been shown to be intimately linked with the antiproliferative effects of certain antiestrogenic compounds, like tamoxifen, which is currently used for the treatment of breast cancer. However, the identification and in vitro study of this novel protein has been hampered to date by a lack of convenient probes that will efficiently label the molecule in nonpurified preparations. Thus, using a selective ABS ligand (4-benzylphenoxy-N-ethylmorpholine, MBPE) as starting material, we synthesized a photosensitive azido derivative, [(2-azido-4-benzyl)phenoxy]N-ethylmorpholine (azido-MBPE) that can be prepared in a tritiated form. Azido-MBPE has a high affinity for ABS (Kd = 3 nM), identical to that of tamoxifen, and covalently labels 5 and 12% of membrane-bound and detergent-solubilized ABS, respectively. Its incorporation is selectively and competitively inhibited by other ABS ligands (tamoxifen greater than nitromifen greater than hydroxytamoxifen). [3H]Azido-MBPE potently photolabels either membrane-bound or detergent-solubilized ABS as determined by sodium dodecyl sulfate-polyacrylamide gel electrophoresis under denaturing conditions revealing specific photoincorporation in a protein band of Mr = 40,000. This molecular weight is approximately two times lower than what we observed previously for ABS preparations studied under nondenaturing conditions and postlabeled with [3H]tamoxifen (Mr = 80,000-110,000). In chromatofocusing experiments with photolabeled ABS, a single specifically labeled protein fraction migrating with a pI of 6.4 was found to exhibit a Mr of 40,000 when subsequently electrophoresed on sodium dodecyl sulfate-polyacrylamide gels. These results indicate that [3H]azido-MBPE is a specific high affinity probe of ABS that will prove useful in the ultimate identification of this protein.
Insights
Researchers developed a new radioactive probe, [3H]azido-MBPE, to identify the anti-estrogen binding site (ABS). This high-affinity probe effectively labels ABS in cells, aiding in the identification of this important protein.
Area of Science:
- Biochemistry
- Molecular Biology
- Cell Biology
Background:
- The anti-estrogen binding site (ABS) is crucial for the antiproliferative effects of antiestrogenic compounds like tamoxifen.
- Identifying and studying ABS in vitro has been challenging due to a lack of effective labeling probes.
Purpose of the Study:
- To synthesize and characterize a novel photosensitive, tritiated azido derivative of a selective ABS ligand (azido-MBPE).
- To utilize [3H]azido-MBPE as a high-affinity probe for labeling and identifying the anti-estrogen binding site (ABS).
Main Methods:
- Synthesis of a photosensitive azido derivative, [(2-azido-4-benzyl)phenoxy]N-ethylmorpholine (azido-MBPE), in a tritiated form.
- Photolabeling of membrane-bound and detergent-solubilized ABS with [3H]azido-MBPE.
- Analysis of labeled ABS using sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) and chromatofocusing.
Main Results:
- [3H]azido-MBPE demonstrated high affinity for ABS (Kd = 3 nM), similar to tamoxifen.
- The probe covalently labeled 5% of membrane-bound and 12% of detergent-solubilized ABS.
- SDS-PAGE revealed specific photoincorporation in a protein band of Mr = 40,000 under denaturing conditions.
- Chromatofocusing identified a single labeled protein fraction with a pI of 6.4 and Mr of 40,000.
Conclusions:
- [3H]azido-MBPE serves as a specific, high-affinity photolabeling probe for the anti-estrogen binding site (ABS).
- This probe facilitates the identification of ABS, which has a molecular weight of approximately 40,000 under denaturing conditions.
- The developed probe is a valuable tool for future research into the characterization and function of ABS.