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首页> 外文期刊>Journal of Molecular Biology >Thermodynamic dissection of the binding energetics of proline-rich peptides to the Abl-SH3 domain: implications for rational ligand design.
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Thermodynamic dissection of the binding energetics of proline-rich peptides to the Abl-SH3 domain: implications for rational ligand design.

机译:富含脯氨酸的肽与Abl-SH3结构域结合能的热力学解剖:对合理配体设计的启示。

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摘要

The inhibition of the interactions between SH3 domains and their targets is emerging as a promising therapeutic strategy. To date, rational design of potent ligands for these domains has been hindered by the lack of understanding of the origins of the binding energy. We present here a complete thermodynamic analysis of the binding energetics of the p41 proline-rich decapeptide (APSYSPPPPP) to the SH3 domain of the c-Abl oncogene. Isothermal titration calorimetry experiments have revealed a thermodynamic signature for this interaction (very favourable enthalpic contributions opposed by an unfavourable binding entropy) inconsistent with the highly hydrophobic nature of the p41 ligand and the Abl-SH3 binding site. Our structural and thermodynamic analyses have led us to the conclusion, having once ruled out any possible ionization events or conformational changes coupled to the association, that the establishment of a complex hydrogen-bond network mediated by water molecules buried at the binding interface is responsible for the observed thermodynamic behaviour. The origin of the binding energetics for proline-rich ligands to the Abl-SH3 domain is further investigated by a comparative calorimetric analysis of a set of p41-related ligands. The striking effects upon the enthalpic and entropic contributions provoked by conservative substitutions at solvent-exposed positions in the ligand confirm the complexity of the interaction. The implications of these results for rational ligand design are discussed.
机译:抑制SH3结构域和其目标之间的相互作用正在成为一种有前途的治疗策略。迄今为止,由于对结合能的起源缺乏了解,阻碍了对这些结构域的有效配体的合理设计。我们在这里提出了一个完整的热力学分析,将富含p41脯氨酸的十肽(APSYSPPPPP)与c-Abl癌基因的SH3域结合的能量。等温滴定量热法实验揭示了这种相互作用的热力学特征(非常有利的焓贡献,不利于结合熵)与p41配体和Abl-SH3结合位点的高度疏水性不一致。我们的结构和热力学分析已得出结论,曾经排除了与缔合相关的任何可能的电离事件或构象变化,认为由埋在结合界面处的水分子介导的复杂氢键网络的建立是造成该现象的原因。观察到的热力学行为。富含脯氨酸的配体与Abl-SH3结构域结合能的起源是通过一组p41相关配体的比较量热分析进一步研究的。配体中溶剂暴露位置的保守取代引起的对焓和熵贡献的显着影响证实了相互作用的复杂性。讨论了这些结果对合理配体设计的影响。

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