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构象受限的ACPD类似物2-氨基双环[2.1.1]己烷-2,5-二羧酸-I的合成与生物学性质,一种有效的代谢型谷氨酸受体激动剂。

Synthesis and biology of the conformationally restricted ACPD analogue, 2-aminobicyclo[2.1.1]hexane-2,5-dicarboxylic acid-I, a potent mGluR agonist.

作者信息

Kozikowski A P, Steensma D, Araldi G L, Tückmantel W, Wang S, Pshenichkin S, Surina E, Wroblewski J T

机构信息

Drug Discovery Program, Institute of Cognitive and Computational Sciences, Georgetown University Medical Center, 3970 Reservoir Road, NW, Washington, D.C. 20007-2197, USA.

出版信息

J Med Chem. 1998 May 7;41(10):1641-50. doi: 10.1021/jm970719q.

Abstract

To better characterize the roles of metabotropic glutamate receptors (mGluRs) in physiological and pathophysiological processes, there is an important need to learn more about the structural features relevant to the design of novel, high-affinity ligands that are family and subtype specific. To date, many of the biological studies that have been conducted in the area of mGluR research have made use of the agonist (1S,3R)-ACPD. This compound has been shown to act as an agonist at both the group I and group II receptors while showing little selectivity among the four subtypes belonging to these two groups. Moreover, (1S,3S)-ACPD, the cis isomer, shows negligible activity at group I receptors and is a good agonist of mGluR2. Since ACPD is itself somewhat flexible, with four distinctive conformations being identified from molecular modeling studies for the trans isomer and five conformations for the cis isomer, we believed that it would be of interest to examine the activity of an ACPD analogue that has been constrained through the introduction of a single carbon atom bridge. Accordingly, we have prepared an aminobicyclo[2.1.1]hexanedicarboxylic acid (ABHxD-I) analogue of ACPD. The synthesis of this compound was accomplished by use of an intramolecular [2 + 2] photocycloaddition reaction, in which four distinct isomers were isolated. Of these four compounds, only a single isomer, ABHxD-I (6a), was found to be a potent agonist of the mGluRs. This compound, which expresses the fully extended glutamate conformation, was found to be more potent than ACPD at all six of the eight mGluR subtypes that were investigated and to be comparable to or more potent than the endogenous ligand, glutamate, for these receptors. Interestingly, despite its fixed conformation, ABHxD-I, like glutamate, shows little subtype selectivity. Through modeling studies of ABHxD-I (6a), ABHD-VI, LY354740, (1S,3R)-ACPD, (1S, 3S)-ACPD, and l-glutamate, we conclude that the aa conformation of l-glutamate is the active conformation for both group I and group II mGluRs. Moreover, the modeling-based comparisons of these ligands suggest that the selectivity exhibited by LY354740 between the group I and group II mGluRs is not a consequence of different conformations of L-glutamate being required for recognition at these mGluRs but rather is related to certain structural elements within certain regions having a very different impact on the group I and group II mGluR activity. The enhanced potency of ABHxD-I relative to trans-ACPD commends it as a useful starting point in the design of subtype selective mGluR ligands.

摘要

为了更好地描述代谢型谷氨酸受体(mGluRs)在生理和病理生理过程中的作用,非常有必要进一步了解与设计新型、高亲和力且具有家族和亚型特异性的配体相关的结构特征。迄今为止,在mGluR研究领域所进行的许多生物学研究都使用了激动剂(1S,3R)-ACPD。该化合物已被证明对I组和II组受体均起激动剂作用,而在属于这两组的四个亚型之间几乎没有选择性。此外,顺式异构体(1S,3S)-ACPD在I组受体上显示出可忽略不计的活性,并且是mGluR2的良好激动剂。由于ACPD本身具有一定的灵活性,通过分子建模研究确定反式异构体有四种不同构象,顺式异构体有五种构象,我们认为研究通过引入单个碳原子桥而受到限制的ACPD类似物的活性会很有意义。因此,我们制备了ACPD的氨基双环[2.1.1]己二酸(ABHxD-I)类似物。该化合物的合成通过分子内[2 + 2]光环化加成反应完成,从中分离出四种不同的异构体。在这四种化合物中,仅发现单一异构体ABHxD-I(6a)是mGluRs的有效激动剂。该化合物呈现出完全伸展的谷氨酸构象,在所研究的八种mGluR亚型中的全部六种亚型上,其活性均比ACPD更强,并且与内源性配体谷氨酸相比,对这些受体的活性相当或更强。有趣的是,尽管ABHxD-I具有固定构象,但与谷氨酸一样,它几乎没有亚型选择性。通过对ABHxD-I(6a)、ABHD-VI、LY354740、(1S,3R)-ACPD、(1S, 3S)-ACPD和L-谷氨酸进行建模研究,我们得出结论,L-谷氨酸的aa构象是I组和II组mGluRs的活性构象。此外,这些配体基于建模的比较表明,LY354740在I组和II组mGluRs之间表现出的选择性并非由于在这些mGluRs上识别需要L-谷氨酸的不同构象,而是与某些区域内的特定结构元件对I组和II组mGluR活性有非常不同的影响有关。ABHxD-I相对于反式ACPD增强的活性使其成为设计亚型选择性mGluR配体的有用起点。

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