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1. Effect of Trace Metal Ions on the Conformational Stability of the Visual Photoreceptor Rhodopsin

2. Polyphenols and Visual Health: Potential Effects on Degenerative Retinal Diseases

3. Effect of Sodium Valproate on the Conformational Stability of the Visual G Protein-Coupled Receptor Rhodopsin

5. New insights into the molecular mechanism of rhodopsin retinitis pigmentosa from the biochemical and functional characterization of G90V, Y102H and I307N mutations

6. Effect of sodium valproate on the conformational stability of the visual G Protein-coupled receptor rhodopsin

7. Ligand Binding Mechanisms in Human Cone Visual Pigments

8. Polyphenols and visual health: potential effects on degenerative retinal diseases

9. Human blue cone opsin regeneration involves secondary retinal binding with analog specificity

10. Docosahexaenoic acid phospholipid differentially modulates the conformation of G90V and N55K rhodopsin mutants associated with retinitis pigmentosa

11. Structural and functional alterations associated with deutan N94K and R330Q mutations of green cone opsin

12. Binding Specificity of Retinal Analogs to Photoactivated Visual Pigments Suggest Mechanism for Fine-Tuning GPCR-Ligand Interactions

13. Functional role of positively selected amino acid substitutions in mammalian rhodopsin evolution

14. Molecular Modeling of the M3 Acetylcholine Muscarinic Receptor and Its Binding Site

15. Optogenetics Comes of Age: Novel Inhibitory Light-Gated Anionic Channels Allow Efficient Silencing of Neural Function

16. Salt Effects on the Conformational Stability of the Visual G-Protein-Coupled Receptor Rhodopsin

17. Differential expression of muscarinic acetylcholine receptor subtypes in Jurkat cells and their signaling

18. Altered trafficking and unfolded protein response induction as a result of M3 muscarinic receptor impaired N-glycosylation

19. Overproduction of human M3 muscarinic acetylcholine receptor: An approach toward structural studies

20. Alterations in the photoactivation pathway of rhodopsin mutants associated with retinitis pigmentosa

21. Dissecting the Conserved NPxxY Motif of the M3 Muscarinic Acetylcholine Receptor: Critical Role of Asp-7.49 for Receptor Signaling and Multiprotein Complex Formation

22. Impaired M3 Muscarinic Acetylcholine Receptor Signal Transduction Through Blockade of Binding of Multiple Proteins to its Third Intracellular Loop

23. Structural Characterization of a Zinc High-affinity Binding Site in Rhodopsin

24. Structural Coupling of 11-cis-7-Methyl-retinal and Amino Acids at the Ligand Binding Pocket of Rhodopsin

25. Phospholipid bicelles improve the conformational stability of rhodopsin mutants associated with retinitis pigmentosa

26. Beyond spectral tuning: human cone visual pigments adopt different transient conformations for chromophore regeneration

27. Molecular Mechanisms of Retinal Toxicity Induced by Light and Chemical Damage

28. A methyl group at C7 of 11-cis-retinal allows chromophore formation but affects rhodopsin activation

29. Bioscouring of Cotton Fiber with Polygalacturonase Induced in Sclerotium rolfsii using Cellulose and Glucose-pectin

30. Dyeing behaviour of cotton fabric bioscoured with pectate lyase and polygalacturonase

32. Effect of some process parameters in the enzymatic scouring of cotton using an acid pectinase

33. Structural and Functional Role of Helices I and II in Rhodopsin

34. Zinc-induced Decrease of the Thermal Stability and Regeneration of Rhodopsin

35. Estructura de la rodopsina: luz en las sombras de las degeneraciones retinianas

36. Calcium-induced decrease of the thermal stability and chaperone activity of α-crystallin

37. Preferential activation by galanin 1-15 fragment of the GalR1 protomer of a GalR1-GalR2 heteroreceptor complex

38. Mercury-induced dark-state instability and photobleaching alterations of the visual g-protein coupled receptor rhodopsin

39. Diversity and Bias through Receptorâ€'Receptor Interactions in GPCR Heteroreceptor Complexes. Focus on Examples from Dopamine D2 Receptor Heteromerization

40. Mutations at position 125 in transmembrane helix III of rhodopsin affect the structure and signalling of the receptor

41. G protein-coupled receptor heterodimerization in the brain

42. G Protein–Coupled Receptor Heterodimerization in the Brain

43. Improved conformational stability of the visual G protein-coupled receptor rhodopsin by specific interaction with docosahexaenoic acid phospholipid

44. On the existence and function of galanin receptor heteromers in the Central Nervous System

45. Extrasynaptic neurotransmission in the modulation of brain function. Focus on the striatal neuronal glial networks

46. Molecular Mechanisms of Disease for Mutations at Gly-90 in Rhodopsin*

47. Alterations in the photoactivation pathway of rhodopsin mutants associated with retinitis pigmentosa

48. Hydrophobic amino acids at the cytoplasmic ends of helices 3 and 6 of rhodopsin conjointly modulate transducin activation

49. An A-form of poly(amino2dA-dT).cntdot.poly(amino2dA-dT) induced by polyamines

50. P.1.g.067 The GalR1–GalR2 heteroreceptor complex can be the receptor for galanin fragment 1–15

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