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A paradigm for drug discovery employing encoded combinatorial libraries.

机译:使用编码组合库进行药物发现的范例。

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摘要

Very large combinatorial libraries of small molecules on solid supports can now be synthesized and each library element can be identified after synthesis by using chemical tags. These tag-encoded libraries are potentially useful in drug discovery, and, to test this utility directly, we have targeted carbonic anhydrase (carbonate dehydratase; carbonate hydro-lyase, EC 4.2.1.1) as a model. Two libraries consisting of a total of 7870 members were synthesized, and structure-activity relationships based on the structures predicted by the tags were derived. Subsequently, an active representative of each library was resynthesized (2-[N-(4-sulfamoylbenzoyl)-4'-aminocyclohexanespiro]-4-oxo-7 -hydroxy- 2,3-dihydrobenzopyran and [N-(4-sulfamoylbenzoyl)-L-leucyl]piperidine-3-carboxylic acid) and these compounds were shown to have nanomolar dissociation constants (15 and 4 nM, respectively). In addition, a focused sublibrary of 217 sulfamoylbenzamides was synthesized and revealed a clear, testable structure-activity relationship describing isozyme-selective carbonic anhydrase inhibitors.
机译:现在可以合成非常大的固体支持物上的小分子组合库,并且可以在合成后使用化学标签识别每个库元素。这些标签编码的文库可能在药物发现中有用,并且,为了直接测试该实用程序,我们以碳酸酐酶(碳酸盐脱水酶;碳酸盐水解酶,EC 4.2.1.1)为模型。合成了总共7870个成员的两个库,并基于标签预测的结构推导了结构-活性关系。随后,重新合成每个文库的活性代表(2- [N-(4-氨磺酰基苯甲酰基)-4'-氨基环己烷螺] -4-氧代-7-羟基-2,3-二氢苯并吡喃和[N-(4-氨磺酰基苯甲酰基) -L-亮氨酰]哌啶-3-羧酸)和这些化合物显示具有纳摩尔解离常数(分别为15和4 nM)。此外,合成了217个氨磺酰基苯甲酰胺的聚焦子库,揭示了描述同工酶选择性碳酸酐酶抑制剂的清晰可测的结构活性关系。

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