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多个细胞外环结构域为促胰液素受体的激动剂结合和激活提供关键决定因素。

Multiple extracellular loop domains contribute critical determinants for agonist binding and activation of the secretin receptor.

作者信息

Holtmann M H, Ganguli S, Hadac E M, Dolu V, Miller L J

机构信息

Center for Basic Research in Digestive Diseases, Mayo Clinic and Foundation, Rochester, Minnesota 55905, USA.

出版信息

J Biol Chem. 1996 Jun 21;271(25):14944-9. doi: 10.1074/jbc.271.25.14944.

DOI:10.1074/jbc.271.25.14944
PMID:8663161
Abstract

Distinct themes exist for ligand-binding domains of G protein-coupled receptors. The secretin receptor is prototypic of a recently described family in this superfamily which binds moderate-sized peptides possessing a diffuse pharmacophore. We recently demonstrated the importance of the N terminus and first loop of this receptor for secretin binding (Holtmann, M. H., Hadac, E. M., and Miller, L. J. (1995) J. Biol. Chem. 270:14394-14398). Here, we extend those findings to define another receptor domain important for agonist recognition and to focus on critical determinants within each of these domains. Extending the secretin-vasoactive intestinal polypeptide (VIP) chimeric receptor approach, we confirmed and refined the critical importance of the N terminus and the need to complement this with other domains of the secretin receptor. There was redundancy in the complementary determinants required, with the second extracellular loop able to compensate for the absence of the first loop. The first 10 residues of the N terminus of the secretin receptor were critical. Sequential segmental and site replacements permitted focusing on the His189-Lys190 sequence at the C terminus of the first extracellular loop, and on four residues (Phe257, Leu258, Asn260, and Thr261) in the N-terminal half of the second loop as providing critical determinants. All receptor constructs which expressed sensitive cAMP responses to secretin (EC50 <5 nM) bound this peptide with high affinity. Of note, one construct dissociated high affinity binding of secretin from its biological responsiveness, providing a clue to the conformational "switch" that activates this receptor.

摘要

G蛋白偶联受体的配体结合结构域存在不同的主题。促胰液素受体是该超家族中最近描述的一个家族的原型,该家族结合具有弥散药效基团的中等大小肽。我们最近证明了该受体的N端和第一个环对于促胰液素结合的重要性(Holtmann,M. H.,Hadac,E. M.,和Miller,L. J.(1995年)《生物化学杂志》270:14394 - 14398)。在此,我们扩展这些发现以定义另一个对激动剂识别重要的受体结构域,并关注这些结构域中每一个的关键决定因素。通过扩展促胰液素 - 血管活性肠肽(VIP)嵌合受体方法,我们证实并细化了N端的关键重要性以及用促胰液素受体的其他结构域对其进行补充的必要性。所需的互补决定因素存在冗余,第二个细胞外环能够补偿第一个环的缺失。促胰液素受体N端的前10个残基至关重要。顺序分段和位点替换使得能够聚焦于第一个细胞外环C端的His189 - Lys190序列,以及第二个环N端一半中的四个残基(Phe257、Leu258、Asn260和Thr261),它们提供关键决定因素。所有对促胰液素表达敏感cAMP反应(EC50 <5 nM)的受体构建体都以高亲和力结合该肽。值得注意的是,一种构建体使促胰液素的高亲和力结合与其生物学反应性解离,为激活该受体的构象“开关”提供了线索。

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