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Intrinsic tryptophan fluorescence of membranes of GH3 pituitary cells: quenching by thyrotropin-releasing hormone.
Authors:T Imae  G D Fasman  P M Hinkle  A H Tashjian
Institution:1. Graduate Department of Biochemistry, Brandeis University Waltham, Mass. 02154, USA;2. Laboratory of Pharmacology Harvard School of Dental Medicine and Department of Pharmacology, Harvard Medical School, Boston, Mass. 02115, USA
Abstract:The intrinsic tryptophan fluorescence of membranes prepared from the GH3 strain of hormone-producing pituitary cells was monitored by spectrofluorometry. Membranes of GH3 cells have specific receptors which bind thyrotropin-releasing hormone (TRH). When TRH binds to GH3 membranes there is quenching of tryptophan fluorescence. The kinetics of the change in fluorescence of GH3 membranes and of TRH binding are similar. In addition, the concentration of TRH required to produce a half-maximum change in fluorescence is 10 nM, and that required for half-maximum binding of TRH to receptors is 11 nM. Inactive TRH analogs which do not bind to TRH receptors likewise do not alter GH3 membrane fluorescence, and a pituitary cell strain which lacks TRH receptors does not change membrane fluorescence on incubation with TRH. We conclude that the TRH-receptor interaction in GH3 membranes is associated with a change in membrane conformation that is readily measured by differential spectrofluorometry.
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