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一种强效且选择性的GPR7(NPBW1)激动剂的开发:神经肽B的系统构效关系研究

Development of a potent and selective GPR7 (NPBW1) agonist: a systematic structure-activity study of neuropeptide B.

作者信息

Kanesaka Maki, Matsuda Masao, Hirano Atsushi, Tanaka Kenichi, Kanatani Akio, Tokita Shigeru

机构信息

Department of Metabolic Disorder Research, Tsukuba Research Institute, Banyu Pharmaceutical Co., Ltd., Okubo 3, Tsukuba, Ibaraki 300-2611, Japan.

出版信息

J Pept Sci. 2007 Jun;13(6):379-85. doi: 10.1002/psc.855.

Abstract

Neuropeptide B (NPB) has been recently identified as an endogenous ligand for GPR7 (NPBW1) and GPR8 (NPBW2) and has been shown to possess a relatively high selectivity for GPR7. In order to identify useful experimental tools to address physiological roles of GPR7, we synthesized a series of NPB analogs based on modification of an unbrominated form of 23 amino acids with amidated C-terminal, Br(-)NPB-23-NH(2). We confirmed that truncation of the N-terminal Trp residue resulted in almost complete loss of the binding affinity of NPB for GPR7 and GPR8, supporting the special importance of this residue for binding. Br(-)NPB-23-NH2 analogs in which each amino acid in positions 4, 5, 7, 8, 9, 10, 12 and 21 was replaced with alanine or glycine exhibited potent binding affinity comparable to the parent peptide. In contrast, replacement of Tyr(11) with alanine reduced the binding affinity for both GPR7 and GPR8 four fold. Of particular interest, several NPB analogs in which the consecutive amino acids from Pro4 to Val(13) were replaced with several units of 5-aminovaleric acid (Ava) linkers retained their potent affinity for GPR7. Furthermore, these Ava-substituted NPB analogs exhibited potent agonistic activities for GPR7 expressed in HEK293 cells. Among the Ava-substituted NPB analogs, analog 15 (Ava-5) and 17 (Ava-3) exhibited potency comparable to the parent peptide for GPR7 with significantly reduced activity for GPR8, resulting in high selectivity for GPR7. These highly potent and selective NPB analogs may be useful pharmacological tools to investigate the physiological and pharmacological roles of GPR7.

摘要

神经肽B(NPB)最近被鉴定为GPR7(NPBW1)和GPR8(NPBW2)的内源性配体,并且已显示出对GPR7具有相对较高的选择性。为了确定用于研究GPR7生理作用的有用实验工具,我们基于对具有酰胺化C末端的23个氨基酸的未溴化形式(Br(-)NPB-23-NH(2))进行修饰,合成了一系列NPB类似物。我们证实,N末端色氨酸残基的截断导致NPB对GPR7和GPR8的结合亲和力几乎完全丧失,这支持了该残基对于结合的特殊重要性。将4、5、7、8、9、10、12和21位的每个氨基酸替换为丙氨酸或甘氨酸的Br(-)NPB-23-NH2类似物表现出与亲本肽相当的强结合亲和力。相反,将Tyr(11)替换为丙氨酸会使对GPR7和GPR8的结合亲和力降低四倍。特别有趣的是,几个将从Pro4到Val(13)的连续氨基酸替换为几个5-氨基戊酸(Ava)接头单元的NPB类似物保留了它们对GPR7的强亲和力。此外,这些Ava取代的NPB类似物对HEK293细胞中表达的GPR

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