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胆囊收缩素B受体的结合位点与转导过程:定点诱变证实跨膜结构域高度保守的芳香族残基的作用

Binding sites and transduction process of the cholecystokininB receptor: involvement of highly conserved aromatic residues of the transmembrane domains evidenced by site-directed mutagenesis.

作者信息

Jagerschmidt A, Guillaume N, Roques B P, Noble F

机构信息

Département de Pharmacochimie Moléculaire et Structurale, Institut National de la Santé et de la Recherche Médicale U266-Centre National de la Recherche Scientifique, 25270 Paris Cedex, France.

出版信息

Mol Pharmacol. 1998 May;53(5):878-85.

PMID:9584214
Abstract

The functional significance of the extracellular amino-terminal region and of three highly conserved aromatic residues present in the fifth (TM-V) and sixth (TM-VI) transmembrane domains of the rat cholecystokinin (CCK)B receptor, transfected in Cos-7 cells, was investigated by site-directed mutagenesis. The amino-terminal region of the CCKB receptor seemed to be weakly involved in CCK binding in that the affinities of CCK8 and selective agonists and antagonists were not modified by truncation of this region. Substitution of Phe347 in TM-VI with alanine produced a mutant receptor that displays the same affinity and selectivity as the wild-type receptor for agonists, but a slightly increased affinity for the selective CCKB antagonist L-365,260. However, the addition of saturating CCK8 concentrations to cells expressing this mutant did not result in the production of inositol phosphates, demonstrating the critical role of Phe347 in CCKB receptor to G protein coupling. Substitution of Phe227 with alanine was without effect on the affinities of CCKB ligands and on phosphoinositide turnover but modified the affinity of the CCKA antagonist L-364,718. Residue Trp351 located within the CCKB receptor TM-VI is involved in the binding of CCK8 and CCK4 and of the CCK4-based antagonist PD-134,308, as illustrated by the decreased affinities of these ligands in W351A mutant. The lower affinity for CCK8 observed with this mutated CCKB receptor accounts for the higher EC50 value for phosphotidylinositol hydrolysis. This study suggests that at least part of the binding site for the agonist is located inside the transmembrane domain of the CCKB receptor, partially overlapping that of antagonists, and gives new insights into the regions involved in the transduction process.

摘要

通过定点诱变研究了在Cos-7细胞中表达的大鼠胆囊收缩素(CCK)B受体细胞外氨基末端区域以及存在于第五(TM-V)和第六(TM-VI)跨膜结构域中的三个高度保守的芳香族残基的功能意义。CCKB受体的氨基末端区域似乎与CCK结合的关系较弱,因为CCK8以及选择性激动剂和拮抗剂的亲和力不会因该区域的截短而改变。用丙氨酸替代TM-VI中的Phe347产生了一种突变受体,该受体对激动剂显示出与野生型受体相同的亲和力和选择性,但对选择性CCKB拮抗剂L-365,260的亲和力略有增加。然而,向表达该突变体的细胞中添加饱和浓度的CCK8并不会导致肌醇磷酸的产生,这表明Phe347在CCKB受体与G蛋白偶联中起关键作用。用丙氨酸替代Phe227对CCKB配体的亲和力和磷酸肌醇周转没有影响,但改变了CCKA拮抗剂L-364,718的亲和力。位于CCKB受体TM-VI内的残基Trp351参与CCK8和CCK4以及基于CCK4的拮抗剂PD-134,308的结合,如这些配体在W351A突变体中的亲和力降低所示。用这种突变的CCKB受体观察到的对CCK8的较低亲和力解释了磷脂酰肌醇水解的较高EC50值。这项研究表明,激动剂的结合位点至少部分位于CCKB受体的跨膜结构域内,与拮抗剂的结合位点部分重叠,并为参与转导过程的区域提供了新的见解。

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