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Paul R. Hartig

2 papers in the library · 84 citations · publishing 1982-1990

Papers

[3H]-DOB(4-bromo-2,5-dimethoxyphenylisopropylamine) and [3H] ketanserin label two affinity states of the cloned human 5-hydroxytryptamine2 receptor.

Molecular Pharmacology November 1, 1990 T. Branchek, N. Adham, M. Macchi et al. 77 citations

A single human 5-HT2 receptor gene, when expressed in monkey kidney or mouse fibroblast cells, produces both [3H]DOB and [3H]ketanserin binding sites that match those in brain tissue. Adding a GTP analog converts two-site agonist binding to a single low-affinity state and reduces high-affinity DOB sites by 50% without changing their affinity. These results demonstrate that DOB and ketanserin bind to different conformations of the same receptor protein, supporting the classical two-state model of agonist and antagonist affinity states over the hypothesis of a separate 5-HT2A receptor subtype.

Photolabeling of brain membrane proteins by lysergic acid diethylamide

Life Sciences April 5, 1982 Anne C. Mahon, Paul R. Hartig 7 citations

Under ultraviolet light, 3H-LSD forms an irreversible covalent bond with some proteins in bovine caudate membranes. The pattern of this photolabeling on gels differs from the general protein staining pattern, but it does not specifically target LSD binding sites linked to neurotransmitter receptors. Because photolabeling can also occur simply from prolonged exposure to room light, it may create artifacts in receptor binding assays.