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Engineering thermodynamic stability and peptide binding properties of the Abp1p SH3 domain.

机译:工程热力学稳定性和Abp1p SH3域的肽结合特性。

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摘要

This thesis investigates protein-protein interactions using the SH3 domain as a model system. The interaction between the SH3 domain of the yeast Actin binding protein 1 (Abp1p) and ligands derived from its biological target proteins is studied. Information derived from an SH3 domain sequence alignment and SH3 domain structural alignments was used to predict functional Abp1p SH3 domain residues. Eight unusual Abp1p SH3 domain residues were identified. Replacement of three of these residues significantly stabilized the domain, increasing its Tm from 60°C to greater than 90°C. These residues were not important for the in vitro binding activity of the Abp1p SH3 domain, but their location on the SH3 domain surface and role in modulating stability suggests potential roles for their function in vivo. Investigation of the functional roles of certain other unusual residues via mutagenesis experiments, in vitro peptide binding assays, and NMR spectroscopy revealed that they are involved in ligand recognition at a binding surface of the Abp1p SH3 domain that differs from the typical interaction surface. The level of Abp1p SH3 domain binding affinity for its in vivo binding sites ranged from 2 muM to 0.03 muM, and residues at either end of the ligand sequences were shown to be required for high affinity. Substitution of conserved residues on the typical interaction surface of the SH3 domain indicated that certain hydrogen bonds across this interface contribute more than others to binding energy. Replacement of Asn 53 was found to reduce binding affinity in a target-specific manner. Mutagenesis experiments indicated that this effect is related to the structural propensity of a single residue in the XP-X-XP motif of the Abp1p SH3 domain ligands, and may result from a change in binding kinetics. These studies reveal that SH3 domains can use an additional binding surface to interact with target sequences, and indicates that certain hydrogen bonds in SH3 domain interaction interfaces control binding affinity and kinetics. The utility of sequence alignment analysis in identifying residues that are important for the stability and function of SH3 domains is also demonstrated.
机译:本文以SH3结构域为模型系统研究蛋白质-蛋白质相互作用。研究了酵母肌动蛋白结合蛋白1(Abp1p)的SH3结构域与源自其生物学靶蛋白的配体之间的相互作用。从SH3域序列比对和SH3域结构比对得出的信息用于预测功能性Abp1p SH3域残基。确定了八个不寻常的Abp1p SH3域残基。这些残基中的三个残基的置换显着稳定了该域,将其Tm从60°C升高至90°C以上。这些残基对于Abp1p SH3结构域的体外结合活性并不重要,但是它们在SH3结构域表面上的位置以及在调节稳定性中的作用表明其在体内功能的潜在作用。通过诱变实验,体外肽结合测定和NMR光谱对某些其他异常残基的功能作用进行的研究表明,它们参与了Abp1p SH3域结合表面上不同于典型相互作用表面的配体识别。 Abp1p SH3结构域与其体内结合位点的结合亲和力水平范围为2μM至0.03μM,并且显示出配体序列任一端的残基都需要高亲和力。 SH3结构域的典型相互作用表面上的保守残基取代表明,该界面上的某些氢键比其他氢键对结合能的贡献更大。发现替换Asn 53以靶标特异性方式降低结合亲和力。诱变实验表明,这种效应与Abp1p SH3域配体的XP-X-XP基序中单个残基的结构倾向有关,并且可能是由于结合动力学的变化所致。这些研究表明,SH3结构域可以使用其他结合表面与靶序列相互作用,并表明SH3域相互作用界面中的某些氢键控制着结合亲和力和动力学。还证明了序列比对分析在鉴定对SH3结构域的稳定性和功能重要的残基中的效用。

著录项

  • 作者

    Rath, Arianna.;

  • 作者单位

    University of Toronto (Canada).;

  • 授予单位 University of Toronto (Canada).;
  • 学科 Chemistry Biochemistry.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 155 p.
  • 总页数 155
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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