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Heterogeneous-Backbone Foldamer Mimics of Zinc Finger Tertiary Structure

机译:锌指三级结构的异质骨干折叠模模拟

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摘要

A variety of oligomeric backbones with compositions deviating from biomacromolecules can fold in defined ways. Termed “foldamers,” these agents have diverse potential applications. A number of protein-inspired secondary structures (e.g., helices, sheets) have been produced from unnatural backbones, yet examples of tertiary folds combining several secondary structural elements in a single entity are rare. One promising strategy to address this challenge is the systematic backbone alteration of natural protein sequences, through which a subset of the side chains is displayed on an unnatural building block to generate a heterogeneous backbone. A drawback to this approach is that substitution at more than one or two sites often comes at a significant energetic cost to fold stability. Here we report heterogeneous-backbone foldamers that mimic the zinc finger domain, a ubiquitous and biologically important metal-binding tertiary motif, and do so with a folded stability that is superior to the natural protein on which their design is based. A combination of UV-vis spectroscopy, isothermal titration calorimetry, and multidimensional NMR reveals that suitably designed oligomers with >20% modified backbones can form native-like tertiary folds with metal-binding environments identical to the prototype sequence (the third finger of specificity factor 1) and enhanced thermodynamic stability. These results expand the scope of heterogeneous-backbone foldamer design to a new tertiary structure class and show that judiciously applied backbone modification can be accompanied by improvement to fold stability.
机译:具有偏离生物大分子组成的多种寡聚主链可以以限定的方式折叠。这些代理称为“文件夹”,具有多种潜在应用。从非天然主链产生了许多受蛋白质启发的二级结构(例如,螺旋,薄片),但是在单个实体中结合几种二级结构元件的三级折叠的例子很少。解决这一挑战的一种有前途的策略是天然蛋白质序列的系统骨架改变,通过这种改变,侧链的一个子集显示在非天然构件上以生成异质骨架。这种方法的缺点是,在一个或两个以上位点进行取代通常需要付出很高的精力成本才能折叠稳定性。在这里,我们报道了模仿锌指结构域(一种普遍存在且具有生物学重要性的金属结合三级基序)的异质骨干折叠夹,其折叠稳定性优于其设计所基于的天然蛋白质。紫外可见光谱,等温滴定热法和多维NMR的结合显示,经过适当设计的具有20%以上修饰骨架的低聚物可以形成天然样的三级折叠,其金属结合环境与原型序列相同(特异性因​​子的第三个手指) 1)并增强了热力学稳定性。这些结果将异质骨干折叠剂设计的范围扩展到新的三级结构类别,并表明明智地应用骨干修饰可以改善折叠稳定性。

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  • 期刊名称 other
  • 作者

    Kelly L. George; W. Seth Horne;

  • 作者单位
  • 年(卷),期 -1(139),23
  • 年度 -1
  • 页码 7931–7938
  • 总页数 21
  • 原文格式 PDF
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