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犬胃动素受体的分子鉴定与特征分析

Molecular identification and characterization of the dog motilin receptor.

作者信息

Ohshiro Hiroyuki, Nonaka Miki, Ichikawa Katsuomi

机构信息

Pfizer Global Research and Development, Discovery Biology Research, 5-2 Taketoyo, Aichi, 470-2393, Japan.

出版信息

Regul Pept. 2008 Feb 7;146(1-3):80-7. doi: 10.1016/j.regpep.2007.08.012. Epub 2007 Aug 24.

Abstract

Motilin, a 22-amino acid peptide hormone secreted by endocrine cells of the intestinal mucosa, plays an important role in the regulation of gastrointestinal motility. The actions of motilin agonists have been extensively investigated in dogs due to physiological similarities between the dog and human alimentary tracts. The amino acid sequence of the dog motilin receptor, however, was previously unknown. We have cloned a cDNA from dog stomach corresponding to the motilin receptor. The deduced protein shared 71% and 72% sequence identity with the human and rabbit motilin receptors, respectively. Expression of the dog motilin receptor in CHO cells promoted the typical cellular responses to the agonists, motilin and erythromycin. The rank order of potency determined for these agonists was similar to that found for the human motilin receptor, with motilin being more potent than erythromycin. Immunohistochemistry of the dog stomach revealed that the motilin receptor was localized in neuronal cell bodies and fibers. This is the first study detailing the cloning, expression, and functional characterization of the dog motilin receptor. Determination of the full sequence and functional properties of the dog motilin receptor will provide useful information enabling us to interpret previous and future studies of motilin agonists in dogs.

摘要

胃动素是一种由肠黏膜内分泌细胞分泌的含22个氨基酸的肽类激素,在胃肠动力调节中发挥着重要作用。由于犬类和人类消化道在生理上具有相似性,因此胃动素激动剂的作用已在犬类中得到广泛研究。然而,犬类胃动素受体的氨基酸序列此前尚不清楚。我们从犬类胃中克隆了一个与胃动素受体相对应的cDNA。推导的蛋白质与人类和兔胃动素受体的序列同一性分别为71%和72%。犬类胃动素受体在CHO细胞中的表达促进了对激动剂胃动素和红霉素的典型细胞反应。这些激动剂的效价顺序与人类胃动素受体相似,胃动素比红霉素更有效。犬类胃的免疫组织化学显示,胃动素受体定位于神经元细胞体和纤维中。这是第一项详细描述犬类胃动素受体克隆、表达和功能特性的研究。确定犬类胃动素受体的完整序列和功能特性将提供有用信息,使我们能够解读此前和未来关于犬类胃动素激动剂的研究。

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