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Tracing Binding Modes in Hit-to-Lead Optimization: Chameleon-Like Poses of Aspartic Protease Inhibitors

机译:跟踪到命中的优化中的绑定模式:天冬氨酸蛋白酶抑制剂的变色龙般的姿势。

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摘要

Successful lead optimization in structure-based drug discovery depends on the correct deduction and interpretation of the underlying structure-activity relationships (SAR) to facilitate efficient decision-making on the next candidates to be synthesized. Consequently, the question arises, how frequently a binding mode (re)-validation is required, to ensure not to be misled by invalid assumptions on the binding geometry. We present an example in which minor chemical modifications within one inhibitor series lead to surprisingly different binding modes. X-ray structure determination of eight inhibitors derived from one core scaffold resulted in four different binding modes in the aspartic protease endothiapepsin, a well-established surrogate for e.g. renin and -secretase. In addition, we suggest an empirical metrics that might serve as an indicator during lead optimization to qualify compounds as candidates for structural revalidation.
机译:基于结构的药物发现中成功的前导优化取决于对潜在的结构-活性关系(SAR)的正确推论和解释,以促进对下一个要合成的候选物的有效决策。因此,出现了一个问题,即需要多长时间进行一次绑定模式(重新)验证,以确保不会被绑定几何形状的无效假设所误导。我们提供了一个实例,其中一个抑制剂系列中的微小化学修饰导致令人惊讶的不同结合方式。 X射线结构测定来自一个核心支架的八种抑制剂导致天冬氨酸蛋白酶内皮蛋白酶中四种不同的结合模式,这是一种公认​​的替代物,例如。肾素和分泌酶。此外,我们建议使用经验指标,作为铅优化过程中的指标,以使化合物符合结构重新验证的要求。

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