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Frag4Lead: growing crystallographic fragment hits by catalog using fragment-guided template docking

机译:Frag4Lead:越来越多的晶体碎片击中通过目录使用fragment-guided模板对接

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In recent years, crystallographic fragment screening has matured into an almost routine experiment at several modern synchrotron sites. The hits of the screening experiment, i.e. small molecules or fragments binding to the target protein, are revealed along with their 3D structural information. Therefore, they can serve as useful starting points for further structure-based hit-to-lead development. However, the progression of fragment hits to tool compounds or even leads is often hampered by a lack of chemical feasibility. As an attractive alternative, compound analogs that embed the fragment hit structurally may be obtained from commercial catalogs. Here, a workflow is reported based on filtering and assessing such potential follow-up compounds by template docking. This means that the crystallographic binding pose was integrated into the docking calculations as a central starting parameter. Subsequently, the candidates are scored on their interactions within the binding pocket. In an initial proof-of-concept study using five starting fragments known to bind to the aspartic protease endothiapepsin, 28 follow-up compounds were selected using the designed workflow and their binding was assessed by crystallography. Ten of these compounds bound to the active site and five of them showed significantly increased affinity in isothermal titration calorimetry of up to single-digit micromolar affinity. Taken together, this strategy is capable of efficiently evolving the initial fragment hits without major synthesis efforts and with full control by X-ray crystallography.
机译:近年来,晶体片段筛选几乎已经成为了惯例现代同步加速器实验在几个网站。的点击筛选实验,即小分子或碎片绑定到目标蛋白质,揭示连同他们的3 d结构信息。作为进一步的有用的起点小hit-to-lead发展。碎片撞击的发展工具化合物,甚至导致经常受阻缺乏化学的可行性。选择,嵌入化合物类似物碎片撞击结构可以获得商业目录。基于筛选和评估这种潜力后续模板化合物的对接。意味着晶体绑定的姿势作为一个集成到对接计算中央启动参数。候选人得分的交互在绑定的口袋里。概念验证研究使用5开始碎片被绑定到天冬氨酸的蛋白酶endothiapepsin 28后续化合物使用设计工作流和他们的选择绑定是通过晶体学评估。这些化合物绑定到活性部位和5显示显著增加亲和力在等温滴定的量热法个位数的微摩尔的亲和力。这种策略能够有效地发展最初的碎片击中没有主要的合成努力和完全控制x射线晶体学。

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