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Identification of the D-1 dopamine receptor subunit in rat striatum after photoaffinity labeling.

When rat striatal membranes, photolabeled with [3H]dopamine under assay conditions similar to those used for dopamine-sensitive adenylate cyclase, were subjected to sodium dodecyl sulfate (SDS) polyacrylamide gel electrophoresis, several radioactively labeled bands appeared. Labeling of these bands was reduced in the presence of non-radioactive dopamine during photolysis, but was unaffected by the presence of sulpiride. Haloperidol preferentially reduced the labeling of the main band which had a molecular weight of about 57,000 rather than the other weakly labeled bands. Labeling of this 57,000 dalton protein was not apparent when rat cerebellar membranes were used and was markedly eliminated by kainic acid-induced lesions that destroyed the intrastriatal nerve cell bodies. These results indicate that this 57,000 dalton protein is the binding subunit of the D-1 dopamine receptor.

Animals↗

3-Azi-1-methoxybutyl beta-D-galactopyranoside, a photoaffinity label for monoclonal antigalactan antibodies of the VH GAL 39.1/55.1 gene-family.

3-Azi-1-methoxybutyl beta-D-galactopyranoside, prepared from 2,3,4,6-tetra-O-acetyl-alpha-D-galactopyranosyl bromide in four steps, had an affinity constant for antigalactans IgA (Fab') J539 and X24 of 1550 and 1730 M-1, respectively. 3-Azi-1-methoxybutyl beta-D-(4-3H)galactopyranoside, when photolysed in the presence of IgA X24, specifically labelled the galactan-binding area of the immunoglobulin.

Affinity Labels↗

Spacer-modified saccharides for the regioselective photoaffinity labelling of the binding site of an immunoglobulin.

The spacer-modified trisaccharides that mimic (1----6)-linked beta-D-galactotetraose (Gal4), namely, O-beta-D-galactopyranosyl-(1----6)-S-beta-D-galactopyranosyl-(1----11)-8 -azi- 6,7,8,9,10-pentadeoxy-11-thio-D-galacto-undecose (12) and O-beta-D-galactopyranosyl-(1----6)-O-beta-D-galactopyranosyl- (1----13)-8-azi-6,7,8,9,10,11,12-heptadeoxy-D-galacto-tri decose (20) were synthesised by coupling disaccharide derivatives with 8-azi-6,7,8,9,10-pentadeoxy-1,2:3,4-di-O-isopropylidene-11-O -tosyl-alpha-D-galacto-undecopyranose (10) and 8-azi-6,7,8,9,10,11,12-heptadeoxy-1,2:3,4-di-O-isopropyli den e-alpha-D-galacto- tridecopyranose (17), respectively. Compounds 12 and 20 had affinities for the combining sites of the antibodies IgA X24 and IgA J 539 similar to those of O-beta-D-galactopyranosyl-(1----6)-O-beta-D- galactopyranosyl-(1----11)-8-azi-6,7,8,9,10-pentadeoxy-D-gal acto-undecose (7) and the native ligand Gal4. Tritium-labelled 7 chemically modified the heavy and light chains of IgA J 539, whereas 8-azi-6,7,8,9,10-pentadeoxy-D-(11-3H)galacto-undecose (5a) reacted only with the heavy chain.

Affinity Labels↗

Comparison of angiotensin receptors in isolated smooth muscle tissues by photoaffinity labelling.

The isolated rat uterus and rabbit aorta were photolabelled with [Azidobenzoic acid 1, isoleucine8]angiotensin II ([AB', Ile8]ANG II) and dose-response curves to angiotensins II and III were determined before and after the irreversible labelling procedure. The data obtained were used to calculate affinities, efficacies and 'spare' receptors for angiotensins II and III. In the rat uterus angiotension II was the higher affinity ligand, whereas in the rabbit aorta angiotensins II and III had similar affinities. 'Spare' receptors were present for both ligands in both tissues. In the rat uterus ANG II and ANG III had similar efficacies, whereas in the rabbit aorta ANG II was the more efficacious ligand. Angiotensin receptors in the rabbit aorta, rat uterus, and rat portal vein appear to be substantially different from one another, and point to the possibility of different functional roles for angiotensins II and III in different smooth muscle tissues. For the vascular tissues, tachyphylaxis to angiotensin was more marked after irreversible labelling than before, suggesting that the mechanism of angiotensin tachyphylaxis is receptor deactivation.

Affinity Labels↗