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Your search keyword '"Schonbrunn A"' showing total 20 results

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20 results on '"Schonbrunn A"'

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1. Differential temporal and spatial regulation of somatostatin receptor phosphorylation and dephosphorylation.

2. Role of amphiphysin II in somatostatin receptor trafficking in neuroendocrine cells.

3. Agonist-induced phosphorylation of somatostatin receptor subtype 1 (sst1). Relationship to desensitization and internalization.

4. Protein kinase C activation stimulates the phosphorylation and internalization of the sst2A somatostatin receptor.

5. beta2-adrenergic receptor desensitization, internalization, and phosphorylation in response to full and partial agonists.

6. Agonist-induced desensitization, internalization, and phosphorylation of the sst2A somatostatin receptor.

7. Affinity purification of a somatostatin receptor-G-protein complex demonstrates specificity in receptor-G-protein coupling.

8. Identification of somatostatin receptors by covalent labeling with a novel photoreactive somatostatin analog.

9. Characterization of bombesin receptors in a rat pituitary cell line.

10. The processing of receptor-bound [125I-Tyr11]somatostatin by RINm5F insulinoma cells.

11. Characterization of the cyclic AMP-independent actions of somatostatin in GH cells. II. An increase in potassium conductance initiates somatostatin-induced inhibition of prolactin secretion.

12. Characterization of functional receptors for somatostatin in rat pituitary cells in culture.

13. The bombesin receptor is coupled to a guanine nucleotide-binding protein which is insensitive to pertussis and cholera toxins.

15. Studies on the mechanism of Mycobacterium smegmatis L-lactate oxidase. 5-Deazaflavin mononucleotide as a coenzyme analogue.

16. Somatostatin pretreatment increases the number of somatostatin receptors in GH4C1 pituitary cells and does not reduce cellular responsiveness to somatostatin.

17. Characterization of the cyclic AMP-independent actions of somatostatin in GH cells. I. An increase in potassium conductance is responsible for both the hyperpolarization and the decrease in intracellular free calcium produced by somatostatin.

18. Pertussis toxin blocks both cyclic AMP-mediated and cyclic AMP-independent actions of somatostatin. Evidence for coupling of Ni to decreases in intracellular free calcium.

19. Studies on the mechanism of action of D-amino acid oxidase. Evidence for removal of substrate -hydrogen as a proton.

20. Inactivation of a flavoprotein, lactate oxidase, by an acetylenic substrate.

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