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Active Site Mapping of an Aspartic Protease by Multiple Fragment Crystal Structures: Versatile Warheads To Address a Catalytic Dyad

机译:多个片段晶体结构的天冬氨酸蛋白酶的活性位点图:多功能战斗部以解决催化双性。

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Crystallography is frequently used as follow-up method to validate hits identified by biophysical screening cascades. The capacity of crystallography to directly screen fragment libraries is often underestimated, due to its supposed low-throughput and need for high-quality crystals. We applied crystallographic fragment screening to map the protein-binding site of the aspartic protease endothiapepsin by individual soaking experiments. Here, we report on 41 fragments binding to the catalytic dyad and adjacent specificity pockets. The analysis identifies already known warheads but also reveals hydrazide, pyrazole, or carboxylic acid fragments as novel functional groups binding to the dyad. A remarkable swapping of the SI and S1' pocket between structurally related fragments is explained by either steric demand, required displacement of a well-bound water molecule, or changes of trigonal-planar to tetrahedral geometry of an oxygen functional group in a side chain. Some warheads simultaneously occupying both S1 and S1' are promising starting points for fragment-growing strategies.
机译:晶体学经常被用作后续方法,以验证通过生物物理筛选级联确定的命中。晶体学直接筛选片段库的能力常常被低估,这是由于其推测的低通量和对高质量晶体的需求。我们通过单独的浸泡实验应用了结晶学片段筛选来绘制天冬氨酸蛋白酶内皮抑素的蛋白结合位点图。在这里,我们报告41片段绑定到催化二元组和相邻的特异性口袋。该分析鉴定出了已知的战斗部,但也揭示出酰肼,吡唑或羧酸片段是与二元体结合的新型官能团。 SI和S1'口袋在结构相关片段之间的显着交换是通过空间需求,必需的结合良好的水分子置换或侧链中氧官能团的三角平面到四面体几何形状的变化来解释的。一些同时占据S1和S1'的弹头是碎片增长战略的有前途的起点。

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