Arlander Sonnet J H, Dong Maoqing, Ding Xi-Qin, Pinon Delia I, Miller Laurence J
Cancer Center, Mayo Clinic in Scottsdale, 13400 East Shea Boulevard, Johnson Research Building, Scottsdale AZ 85259, USA.
Mol Pharmacol. 2004 Sep;66(3):545-52. doi: 10.1124/mol.104.001396.
The molecular basis of docking of receptor ligands having differences in biological activity and their subsequent effects on receptor conformation represent areas of great interest. In this work, we focus on the sulfated tyrosyl residue in position 27 of cholecystokinin (CCK) and its spatial approximation with the type A CCK receptor residue Arg(197) that has been predicted from mutagenesis experiments. We have examined the requirement for sulfation of this residue in a series of structurally related peptide agonists, partial agonists, and antagonists using assays of receptor binding and biological activity. Whereas sulfation of CCK position 27 was critical for affinity and potency of a full agonist, it had progressively less effect as the biological activity of the ligand was reduced. It had an intermediate effect on the partial agonist and no effect on the antagonist. In addition, photoaffinity labeling was used to determine the spatial approximations between the receptor and residue 27 of the agonist and antagonist in this series. Direct photoaffinity labeling with a full agonist probe confirmed the spatial approximation of ligand residue 27 and receptor residue Arg(197) in the active complex. Of note, the analogous antagonist probe labeled a distinct region within the receptor amino terminus, confirming a key structural difference in active and inactive complexes.
具有不同生物活性的受体配体对接的分子基础及其对受体构象的后续影响是备受关注的领域。在这项工作中,我们聚焦于胆囊收缩素(CCK)第27位的硫酸化酪氨酰残基,以及它与A 型CCK受体残基Arg(197)的空间接近度,这是通过诱变实验预测出来的。我们使用受体结合和生物活性测定法,研究了一系列结构相关的肽激动剂、部分激动剂和拮抗剂中该残基硫酸化的必要性。虽然CCK第27位的硫酸化对于完全激动剂的亲和力和效力至关重要,但随着配体生物活性的降低,其影响逐渐减小。它对部分激动剂有中等程度的影响,而对拮抗剂没有影响。此外,光亲和标记法用于确定该系列中受体与激动剂和拮抗剂第27位残基之间的空间接近度。用完全激动剂探针进行直接光亲和标记证实了活性复合物中配体残基27与受体残基Arg(197)的空间接近度。值得注意的是,类似的拮抗剂探针标记了受体氨基末端内的一个不同区域,证实了活性和非活性复合物中的关键结构差异。