Ambroise Yves, Yaspan Brian, Ginsberg Mark H, Boger Dale L
Department of Chemistry, The Scripps Research Institute, 10550 North Torrey Pines Road, La Jolla, CA 92037, USA.
Chem Biol. 2002 Nov;9(11):1219-26. doi: 10.1016/s1074-5521(02)00246-6.
Screening combinatorial libraries for inhibition of Paxillin binding to the cytoplasmic tail of the integrin alpha4 provided the first inhibitors of this protein-protein interaction implicated in enhanced rates of cell migration and chronic inflammation. The preparation of substructure analogs of the lead identified features required for activity, those available for modification, and those that may be removed. The most potent lead structure was shown to inhibit alpha(4)beta(1)-mediated human Jurkat T cell migration in a dose-dependent manner, validating the intracellular Paxillin/alpha4 interaction as a useful and unique target for therapeutic intervention. Moreover, the lead structure emerged from a library that was prepared in two formats: (1) a traditional small mixture format composed of 100 mixtures of 10 compounds and (2) a positional scanning library. Their parallel testing provided the rare opportunity to critically compare two approaches.
通过筛选组合文库以抑制桩蛋白与整联蛋白α4胞质尾的结合,获得了这种蛋白质-蛋白质相互作用的首批抑制剂,该相互作用与细胞迁移速率加快和慢性炎症有关。对先导化合物的亚结构类似物进行制备,确定了活性所需的特征、可用于修饰的特征以及可去除的特征。最有效的先导结构被证明以剂量依赖的方式抑制α(4)β(1)介导的人Jurkat T细胞迁移,证实细胞内桩蛋白/α4相互作用是治疗干预的一个有用且独特的靶点。此外,先导结构来自一个以两种形式制备的文库:(1) 由100种含10种化合物的混合物组成的传统小混合物形式;(2) 位置扫描文库。对它们进行平行测试提供了一个难得的机会来严格比较两种方法。