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首页> 外文期刊>Journal of Medicinal Chemistry >Conformational preferences in a benzodiazepine series of potent nonpeptide fibrinogen receptor antagonists.
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Conformational preferences in a benzodiazepine series of potent nonpeptide fibrinogen receptor antagonists.

机译:苯二氮卓类有效非肽纤维蛋白原受体拮抗剂的构象偏爱。

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摘要

Previously, we reported the direct design of highly potent nonpeptide 3-oxo-1,4-benzodiazepine fibrinogen receptor antagonists from a constrained, RGD-containing cyclic semipeptide. The critical features incorporated into the design of these nonpeptides were the exocyclic amide at the 8-position which overlaid the Arg carbonyl, the phenyl ring which maintained an extended Gly conformation, and the diazepine ring which mimicked the gamma-turn at Asp. In this paper, we investigate conformational preferences of the 8-substituted benzodiazepine analogues by examining structural modifications to both the exocyclic amide and the seven-membered diazepine ring and by studying the conformation of the benzodiazepine ring using molecular modeling, X-ray crystallography, and NMR. We found that the directionality of the amide at the 8-position had little effect on activity and the (E)-olefin analogue retained significant potency, indicating that the trans orientation of the amide, and not the carbonyl or NH groups, made the largest contribution to the observed activity. For the diazepine ring, with the exception of the closely analogous 3-oxo-2-benzazepine ring system described previously, all of the modifications led to a significant reduction in activity compared to the potent 3-oxo-1, 4-benzodiazepine parent ring system, implicating this particular type of ring system as a desirable structural feature for high potency. Energy minimizations of a number of the modified analogues revealed that none could adopt the same low-energy conformation as the one shared by the active (S)-isomer of the 3-oxo-1, 4-benzodiazepines and 3-oxo-2-benzazepines. The overall data suggest that the features contributing to the observed high potency in this series are the orientation of the 3-4 amide and the conformational constraint imposed by the seven-membered ring, both of which position the key acidic and basic groups in the proper spatial relationship.
机译:以前,我们报道了受约束的含RGD的环状半肽直接设计的高效非肽3-oxo-1,4-苯并二氮杂pine纤维蛋白原受体拮抗剂。纳入这些非肽设计的关键特征是8位上的环外酰胺(覆盖Arg羰基),苯环(保持扩展的Gly构象)和二氮杂环(模仿在Asp处的伽马角)。在本文中,我们通过检查环外酰胺和七元二氮杂环的结构修饰以及通过分子建模,X射线晶体学和NMR。我们发现酰胺在8位的方向性对活性几乎没有影响,并且(E)-烯烃类似物保留了显着的效能,这表明酰胺的反式取向最大,而不是羰基或NH基团对观察到的活动的贡献。对于二氮杂环,除了前面所述的极为相似的3-氧代-2-苯并ze庚环体系外,与强效的3-氧代-1、4-苯并二氮杂双环相比,所有修饰均导致活性显着降低。环系统,暗示这种特定类型的环系统是高效能的理想结构特征。许多修饰的类似物的能量最小化显示,没有一个可以采用与3-oxo-1、4-苯并二氮杂卓和3-oxo-2-的活性(S)-异构体相同的低能构象苯并ze庚因。总体数据表明,在该系列中观察到的高效能的特征是3-4酰胺的方向和七元环施加的构象约束,这两者都将关键的酸性和碱性基团置于适当的位置空间关系。

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