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Packing defects as selectivity switches for drug-based protein inhibitors

机译:包装缺陷是基于药物的蛋白质抑制剂的选择性切换

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摘要

The conservation of structure across homolog proteins often diffuses the impact of drug-based inhibition by promoting alternative protein-ligand associations that may lead to toxic side effects. However, sticky packing defects are typically not conserved across homologs, making them valuable a priori targets to enhance specificity. By introducing a homology to quantify packing differences among proteins, we enable a previously undescribed strategy for the design of highly selective drug inhibitors involving ligands that wrap nonconserved packing defects. The selectivity of these ligands is validated by performing affinity assays on a cancer-related pharmacokinome. Minor reengineering of a powerful inhibitor guided by wrapping differences across its target kinome can selectively direct its impact toward a specific kinase. Thus, nonconserved packing defects may be used as selectivity switches across homolog targets, using spatial displacements of packing defects across aligned protein structures.
机译:跨同源蛋白的结构保守性通常通过促进替代的蛋白质-配体缔合而扩散基于药物的抑制作用,这可能导致毒性副作用。然而,粘性包装缺陷通常在同源物中不被保留,使其成为有价值的先验靶标以增强特异性。通过引入同源性来量化蛋白质之间的堆积差异,我们实现了一种先前未描述的策略,用于设计涉及包裹非保守堆积缺陷的配体的高选择性药物抑制剂。这些配体的选择性通过对癌症相关的药代动力学进行亲和力测定来验证。通过在目标激酶组中包裹差异来对强效抑制剂进行少量改造,可以选择性地将其作用导向特定的激酶。因此,使用跨排列的蛋白质结构的包装缺陷的空间位移,可以将非保守的包装缺陷用作跨同源靶标的选择性转换。

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