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通过光亲和标记证明高亲和力肽配体与A 型和 B 型胆囊收缩素受体的差异对接。

Differential docking of high-affinity peptide ligands to type A and B cholecystokinin receptors demonstrated by photoaffinity labeling.

作者信息

Dong Maoqing, Liu Guangming, Pinon Delia I, Miller Laurence J

机构信息

Mayo Clinic Scottsdale, Cancer Center and Department of Molecular Pharmacology and Experimental Therapeutics, Scottsdale, Arizona 85259, USA.

出版信息

Biochemistry. 2005 May 3;44(17):6693-700. doi: 10.1021/bi050130q.

Abstract

Type A and B cholecystokinin (CCK) receptors are highly homologous members of the class-I family of G protein-coupled receptors that bind CCK with high affinity. However, they have divergent structural specificities, with the type A receptor requiring seven carboxyl-terminal residues including a sulfated tyrosine and the type B receptor requiring only the carboxyl-terminal tetrapeptide. The aim of this work was to utilize affinity labeling to determine spatial approximations with photolabile p-benzoyl-l-phenylalanine (Bpa) residues sited at each end of CCK as docked at the type B CCK receptor, contrasting this with analogous work using similar probes docked at the type A receptor. Both probes were fully efficacious, potent agonists that stimulated intracellular calcium in receptor-bearing CHO-CCKBR cells (EC(50) values: Bpa(24) probe, 41 +/- 9 pM; Bpa(33) probe, 15 +/- 3.3 pM). They bound specifically, with high affinity (K(i) values: Bpa(24) probe, 0.60 +/- 0.17 nM; Bpa(33) probe, 0.58 +/- 0.11 nM). Cyanogen bromide cleavage of the covalently labeled receptor suggested the first extracellular loop as the region of labeling by each probe, distinct from the type A CCK receptor regions labeled using the same probes (third loop and amino-terminal tail, respectively). This was confirmed by subsequent enzymatic and chemical cleavage of labeled wild-type and mutant receptors. Sequential cycles of Edman degradation of labeled receptor fragments identified the specific residues within loop one labeled by each probe (Bpa(24) probe labeled Phe(122); Bpa(33) probe labeled Thr(119)). This provides a direct demonstration of distinct modes of docking the same high-affinity ligand to highly homologous receptors.

摘要

A 型和 B 型胆囊收缩素(CCK)受体是 G 蛋白偶联受体 I 类家族中高度同源的成员,它们以高亲和力结合 CCK。然而,它们具有不同的结构特异性,A型受体需要七个羧基末端残基,包括一个硫酸化酪氨酸,而 B 型受体仅需要羧基末端四肽。这项工作的目的是利用亲和标记来确定与光不稳定的对苯甲酰基-L-苯丙氨酸(Bpa)残基的空间近似值,这些残基位于对接在 B 型 CCK 受体上的 CCK 的两端,并将其与使用对接在 A 型受体上的类似探针的类似工作进行对比。两种探针都是完全有效的强效激动剂,可刺激表达受体的 CHO-CCKBR 细胞中的细胞内钙(EC50 值:Bpa(24) 探针,41±9 pM;Bpa(33) 探针,15±3.3 pM)。它们特异性结合,具有高亲和力(Ki 值:Bpa(24) 探针,0.60±0.17 nM;Bpa(33) 探针,0.58±0.11 nM)。共价标记受体的溴化氰裂解表明第一个细胞外环是每个探针的标记区域,这与使用相同探针标记的 A 型 CCK 受体区域(分别为第三环和氨基末端尾巴)不同。这通过随后对标记的野生型和突变型受体的酶促和化学裂解得到证实。标记受体片段的 Edman 降解的连续循环确定了每个探针标记的环一中的特定残基(Bpa(24) 探针标记 Phe(122);Bpa(33) 探针标记 Thr(119))。这直接证明了将相同的高亲和力配体对接至高度同源受体的不同模式。

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