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首页> 外文期刊>Journal of combinatorial chemistry >A Rigid Linker-Scaffold for Solid-Phase Synthesis of Dimeric Pharmacophores
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A Rigid Linker-Scaffold for Solid-Phase Synthesis of Dimeric Pharmacophores

机译:刚性接头骨架,用于固相合成二聚药基。

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Bifunctional linker-scaffolds (compounds 1-3) were designed to meet several criteria for solid-phase syntheses of bivalent ligands. They have two amine-functionalized arms that can be differentially protected. Elaboration of these arms could give ligand-pharmacophore dimers wherein the two active components are held reasonably rigidly at around 10 A separation. Their bifunctional design also enables reactions of libraries with libraries to amplify diversity in a truly combinatorial fashion. Molecules 1-3 are also designed so that cleavage of the linker liberates the scaffold entity into solution under conditions that create only byproducts that should not interfere with biological assays. Thus they contain 2-nitrobenzene sulfonamide components that cleave in the presence of good nucleophiles. In the event, the linker-scaffolds 1-3 were prepared (Schemes 1 and 2). The N-benzyl system 2 was shown to have good stability to the types of conditions that might be used to functionaliez the scaffold arms and to be sufficiently labile to the cleavage nucleophile (vide infra). The nucleophiles generally used to cleave nitrobenzene sulfonamides either generate undesirable byproducts (thiophenol or alkane thiols) or proved to be insufficiently reactive for the required solid-phase transformations (n-propylamine). However, sodium sulfide was investigated as a new alternative and shown to be a highly reactive cleavage agent that gives only volatile byproducts and sodium hydroxide. It is suggested that sodium sulfide is a highly desirable nucleophile for cleavage of 2-nitrobenzene sulfonamides, in general. The linker-scaffolds 1-3 were used to prepare a small library of bivalent ligands targeted to a protein receptor having charged cavities separated by approximately 10 A. These systems were made from guanidine, pyridinium, carboxylic acid, and sulfonic acid constituents (Tables 1 and 2).
机译:设计双功能接头-骨架(化合物1-3)以满足二价配体的固相合成的几个标准。它们有两个可以不同保护的胺官能化臂。修饰这些臂可以得到配体-药效基团二聚体,其中两个活性组分在大约10 A的间隔下被合理地刚性固定。它们的双功能设计还使库与库之间的反应能够以真正的组合方式扩大多样性。还设计了分子1-3,以使连接物的裂解在仅产生不应干扰生物学测定的副产物的条件下将支架实体释放至溶液中。因此,它们含有在良好亲核试剂存在下裂解的2-硝基苯磺酰胺组分。在这种情况下,制备了连接体支架1-3(方案1和2)。 N-苄基系统2显示出对可用于功能化支架臂的条件类型具有良好的稳定性,并且对裂解亲核试剂足够不稳定(见下文)。通常用于裂解硝基苯磺酰胺的亲核试剂会产生不希望的副产物(硫酚或烷硫醇),或者对所需的固相转化反应不充分(正丙胺)。然而,对硫化钠进行了研究,认为它是一种高反应性的裂解剂,仅产生挥发性副产物和氢氧化钠,是一种高反应性的裂解剂。一般认为,对于切割2-硝基苯磺酰胺,硫化钠是非常需要的亲核试剂。使用连接子支架1-3制备了一个二价配体的小文库,该文库针对的是具有约10 A分开的带电荷腔的蛋白质受体。这些系统由胍,吡啶鎓,羧酸和磺酸成分制成(表1和2)。

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