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Effects of Single α-to-β Residue Replacements on Structure and Stability in a Small Protein: Insights from Quasiracemic Crystallization

机译:单个α-β残基置换对小蛋白的结构和稳定性的影响:准外消旋结晶的见解

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Synthetic peptides that contain backbone modifications but nevertheless adopt folded structures similar to those of natural polypeptides are of fundamental interest and may provide a basis for biomedical applications. Such molecules can, for example, mimic the ability of natural prototypes to bind to specific target macromolecules but resist degradation by proteases. We have previously shown that oligomers containing mixtures of α- and β-amino acid residues ("α/β-peptides") can mimic the α-helix secondary structure, and that properly designed α/β-peptides can bind to proteins that evolved to bind to α-helical partners. Here we report fundamental studies that support the long-range goal of extending the α/β approach to tertiary structures. We have evaluated the impact of single α→β modifications on the structure and stability of the small and well-studied villin headpiece subdomain (VHP). The native state of this 35-residue polypeptide contains several a-helical segments packed around a small hydrophobic core. We examined α→β substitution at four solvent-exposed positions, Asn19, Trp23, Gln26 and Lys30. In each case, both the β~3 homologue of the natural α residue and a cyclic β residue were evaluated. All α→β~3 substitutions caused significant destabilization of the tertiary structure as measured by variable-temperature circular dichroism, although at some of these positions, replacing the β~3 residue with a cyclic β residue led to improved stability. Atomic-resolution structures of four VHP analogues were obtained via quasiracemic crystallization. These findings contribute to a fundamental α/β-peptide knowledge-base by confirming that β~3-amino acid residues can serve as effective structural mimics of homologous α-amino acid residues within a natural tertiary fold, which should support rational design of functional α/β analogues of natural poly-α-peptides.
机译:含有骨架修饰但仍采用与天然多肽相似的折叠结构的合成肽具有根本的意义,并可为生物医学应用提供基础。这样的分子可以例如模仿天然原型结合特定靶标大分子的能力,但是抵抗蛋白酶的降解。先前我们已经证明,包含α-和β-氨基酸残基(“α/β-肽”)混合物的寡聚物可以模拟α-螺旋二级结构,并且经过适当设计的α/β-肽可以与进化的蛋白质结合与α-螺旋伴侣结合。在这里,我们报告了基础研究,这些研究支持将α/β方法扩展到三级结构的长期目标。我们已经评估了单个α→β修饰对经过精心研究的小villin头戴式子域(VHP)的结构和稳定性的影响。这种35个残基的多肽的天然状态包含几个包裹在小的疏水核心周围的α-螺旋片段。我们检查了四个溶剂暴露位置Asn19,Trp23,Gln26和Lys30的α→β取代。在每种情况下,均评估了天然α残基和环状β残基的β〜3同系物。通过可变温度圆二色性测量,所有α→β〜3取代均引起三级结构的显着不稳定,尽管在这些位置中的某些位置,用环状β残基取代β〜3残基可提高稳定性。通过准外消旋结晶获得了四个VHP类似物的原子分辨结构。这些发现通过证实β〜3-氨基酸残基可以作为天然叔折叠内同源α-氨基酸残基的有效结构模拟物,从而为基本的α/β-肽知识库做出了贡献,这应该支持功能性的合理设计。天然多肽的α/β类似物。

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  • 来源
    《Journal of the American Chemical Society》 |2016年第20期|6498-6505|共8页
  • 作者单位

    Department of Chemistry University of Wisconsin-Madison, Madison, Wisconsin 53706, United States;

    Department of Chemistry University of Wisconsin-Madison, Madison, Wisconsin 53706, United States,Scripps Research Institute, La Jolla, California, 92037, United States;

    Department of Bacteriology, University of Wisconsin-Madison, Madison, Wisconsin 53706, United States;

    Department of Chemistry University of Wisconsin-Madison, Madison, Wisconsin 53706, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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