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首页> 外文期刊>BMC Structural Biology >The high-resolution NMR structure of the R21A Spc-SH3:P41 complex: Understanding the determinants of binding affinity by comparison with Abl-SH3
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The high-resolution NMR structure of the R21A Spc-SH3:P41 complex: Understanding the determinants of binding affinity by comparison with Abl-SH3

机译:R21A Spc-SH3:P41络合物的高分辨率NMR结构:通过与Abl-SH3比较了解结合亲和力的决定因素

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Background SH3 domains are small protein modules of 60–85 amino acids that bind to short proline-rich sequences with moderate-to-low affinity and specificity. Interactions with SH3 domains play a crucial role in regulation of many cellular processes (some are related to cancer and AIDS) and have thus been interesting targets in drug design. The decapeptide APSYSPPPPP (p41) binds with relatively high affinity to the SH3 domain of the Abl tyrosine kinase (Abl-SH3), while it has a 100 times lower affinity for the α-spectrin SH3 domain (Spc-SH3). Results Here we present the high-resolution structure of the complex between the R21A mutant of Spc-SH3 and p41 derived from NMR data. Thermodynamic parameters of binding of p41 to both WT and R21A Spc-SH3 were measured by a combination of isothermal titration and differential scanning calorimetry. Mutation of arginine 21 to alanine in Spc-SH3 increases 3- to 4-fold the binding affinity for p41 due to elimination at the binding-site interface of the steric clash produced by the longer arginine side chain. Amide hydrogen-deuterium experiments on the free and p41-bound R21A Spc-SH3 domain indicate that binding elicits a strong reduction in the conformational flexibility of the domain. Despite the great differences in the thermodynamic magnitudes of binding, the structure of the R21A Spc-SH3:P41 complex is remarkably similar to that of the Abl-SH3:P41 complex, with only few differences in protein-ligand contacts at the specificity pocket. Using empirical methods for the prediction of binding energetics based on solvent-accessible surface area calculations, the differences in experimental energetics of binding between the two complexes could not be properly explained only on the basis of the structural differences observed between the complexes. We suggest that the experimental differences in binding energetics can be at least partially ascribed to the absence in the R21A Spc-SH3:P41 complex of several buried water molecules, which have been proposed previously to contribute largely to the highly negative enthalpy and entropy of binding in the Abl-SH3:P41 complex. Conclusion Based on a deep structural and thermodynamic analysis of a low and high affinity complex of two different SH3 domains with the same ligand p41, we underline the importance of taking into account in any effective strategy of rational design of ligands, factors different from the direct protein-ligand interactions, such as the mediation of interactions by water molecules or the existence of cooperative conformational effects induced by binding.
机译:背景SH3结构域是60-85个氨基酸的小型蛋白质模块,可以中等至低的亲和力和特异性结合短脯氨酸富集序列。与SH3结构域的相互作用在许多细胞过程的调节中起着至关重要的作用(有些与癌症和艾滋病有关),因此已成为药物设计中令人关注的目标。十肽APSYSPPPPP(p41)与Abl酪氨酸激酶(Abl-SH3)的SH3结构域具有相对较高的亲和力,而与α-血影蛋白SH3结构域(Spc-SH3)的亲和力低100倍。结果在这里,我们从NMR数据中获得了Spc-SH3的R21A突变体与p41之间的复合物的高分辨率结构。通过等温滴定和差示扫描量热法的组合测量p41与WT和R21A Spc-SH3结合的热力学参数。 Spc-SH3中精氨酸21向丙氨酸的突变使对p41的结合亲和力提高了3到4倍,这是由于消除了较长精氨酸侧链产生的空间碰撞的结合位点界面。在游离的和与p41结合的R21A Spc-SH3结构域上进行的酰胺氢-氘实验表明,结合引起结构域构象柔性的强烈降低。尽管结合的热力学强度差异很大,但R21A Spc-SH3:P41复合物的结构与Abl-SH3:P41复合物的结构非常相似,但在特异性口袋处的蛋白质-配体接触只有很少的差异。使用基于溶剂可及表面积计算的经验方法来预测结合能的方法,仅根据配合物之间观察到的结构差异,就无法正确解释两种配合物之间结合能的实验能量学差异。我们建议,结合能学上的实验差异至少可以部分归因于R21A Spc-SH3:P41络合物中不存在几个埋藏的水分子,而这些分子先前已被认为对结合的高负焓和熵有很大贡献。在Abl-SH3:P41复合物中。结论基于对两个具有相同配体p41的不同SH3结构域的低亲和力和高亲和力复合物进行的深入结构和热力学分析,我们强调了在合理设计配体的任何有效策略中考虑与直接因素不同的因素的重要性。蛋白质-配体相互作用,例如水分子相互作用的介导作用或结合引起的协同构象效应的存在。

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