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Engineered Protein Scaffolds as Leads for Synthetic Inhibitors of Protein-Protein Interactions

机译:工程化蛋白质支架作为蛋白质-蛋白质相互作用的合成抑制剂的线索

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摘要

Rationally designed protein-protein interaction inhibitors mimic interfacial binding epitopes, specifically residues that contribute significantly to binding. However, direct mimicry often does not lead to high affinity ligands because the natural complexes themselves are functionally transient and of low affinity. The mimics typically need to be optimized for potency. Engineered proteins displaying conformationally-defined epitopes may serve as attractive alternatives to natural protein partners as they can be strictly screened for tight binding. The advantage of focused screens with conformationally-defined protein scaffolds is that conservation of the geometry of the natural binding epitopes may preserve binding site specificity while allowing direct mimicry by various synthetic secondary structure scaffolds. Here we review different classes of engineered proteins for their binding epitope geometry and as leads for synthetic secondary and tertiary structure mimics.
机译:合理设计的蛋白质-蛋白质相互作用抑制剂可模拟界面结合表位,尤其是对结合起重要作用的残基。然而,直接模仿通常不会导致高亲和力配体,因为天然复合物本身在功能上是瞬态的并且具有低亲和力。通常需要对模拟物进行效能优化。显示出构象定义表位的工程化蛋白可以作为天然蛋白伴侣的诱人替代品,因为可以严格筛选它们的紧密结合。用构象定义的蛋白质支架进行聚焦筛选的优点是,天然结合表位的几何结构的保守可以保留结合位点特异性,同时允许各种合成的二级结构支架直接模仿。在这里,我们针对结合表位的几何结构以及合成的二级和三级结构模拟物,综述了不同种类的工程蛋白。

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  • 年(卷),期 -1(44),-1
  • 年度 -1
  • 页码 16–22
  • 总页数 11
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