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1. Structure-Based Design of a Chemical Probe Set for the 5‑HT5A Serotonin Receptor

2. Structure-based design of a chemical probe set for the 5-HT5A serotonin receptor

3. GPCR-G Protein-β-Arrestin Super-Complex Mediates Sustained G Protein Signaling

4. Allosteric nanobodies reveal the dynamic range and diverse mechanisms of G-protein-coupled receptor activation.

6. Allosteric “beta-blocker” isolated from a DNA-encoded small molecule library

7. Neurotensin Receptor Allosterism Revealed in Complex with a Biased Allosteric Modulator

8. Neurotensin receptor allosterism revealed in complex with a biased allosteric modulator

10. Structure-Based Design of a Chemical Probe Set for the 5-HT5A Serotonin Receptor

12. Structure-based design of a chemical probe set for the 5-HT5A serotonin receptor

13. A stress response pathway regulates DNA damage through [β.sub.2]-adrenoreceptors and β-arrestin-1

14. Rapid modulation of spine morphology by the [5-HT.sub.2A] serotonin receptor through kalirin-7 signaling

18. Discovery of Human Signaling Systems:Pairing Peptides to G Protein-Coupled Receptors

19. Structure-Based Design of a Chemical Probe Set for the 5-HT5ASerotonin Receptor

20. Discovery of Human Signaling Systems: Pairing Peptides to G Protein-Coupled Receptors

23. Structure of the Nanobody-Stabilized Active State of the Kappa Opioid Receptor

24. p90 Ribosomal S6 kinase 2, a novel GPCR kinase, is required for growth factor-mediated attenuation of GPCR signaling

25. Mdm2 regulates cardiac contractility by inhibiting GRK2-mediated desensitization of β-adrenergic receptor signaling

27. Conformationally selective RNA aptamers allosterically modulate the β2-adrenoceptor

30. Regulation of β2-adrenergic receptor function by conformationally selective single-domain intrabodies

31. Ribosomal S6 Kinase 2 Directly Phosphorylates the 5-Hydroxytryptamine 2A (5-HT 2A ) Serotonin Receptor, Thereby Modulating 5-HT 2A Signaling

32. Allosteric “beta-blocker” isolated from a DNA-encoded small molecule library.

35. Distinct Phosphorylation Sites on the β 2 -Adrenergic Receptor Establish a Barcode That Encodes Differential Functions of β-Arrestin

39. Allosteric Nanobodies Reveal the Dynamic Range and Diverse Mechanisms of GPCR Activation

40. Chronic treatment in vivo with β-adrenoceptor agonists induces dysfunction of airway β2-adrenoceptors and exacerbates lung inflammation in mice.

41. A stress response pathway regulates DNA damage through ?2-adrenoreceptors and ?-arrestin-1.

43. Rapid modulation of spine morphology by the 5-HT2A serotonin receptor through kalirin-7 signaling.

44. Ribosomal S6 Kinase 2 Directly Phosphorylates the 5-Hydroxytryptamine 2A (5-HT2A) Serotonin Receptor, Thereby Modulating 5-HT2A Signaling.

45. Regulation of β2-Adrenergic Receptor Function by Conformationally Selective Single-Domain Intrabodies

46. Genetic Deletion of p90 Ribosomal S6 Kinase 2 Alters Patterns of 5-Hydroxytryptamine2ASerotonin Receptor Functional Selectivity

47. Structure-Based Design of a Chemical Probe Set for the 5-HT 5A Serotonin Receptor.

48. Genetic deletion of p90 ribosomal S6 kinase 2 alters patterns of 5-hydroxytryptamine 2A serotonin receptor functional selectivity.

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