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首页> 外文期刊>Protein Science: A Publication of the Protein Society >High-energy water sites determine peptide binding affinity and specificity of PDZ domains.
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High-energy water sites determine peptide binding affinity and specificity of PDZ domains.

机译:高能水位决定了PDZ结构域的肽结合亲和力和特异性。

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摘要

PDZ domains have well known binding preferences for distinct C-terminal peptide motifs. For most PDZ domains, these motifs are of the form [S/T]-W-[I/L/V]. Although the preference for S/T has been explained by a specific hydrogen bond interaction with a histidine in the PDZ domain and the (I/L/V) is buried in a hydrophobic pocket, the mechanism for Trp specificity at the second to last position has thus far remained unknown. Here, we apply a method to compute the free energies of explicit water molecules and predict that potency gained by Trp binding is due to a favorable release of high-energy water molecules into bulk. The affinities of a series of peptides for both wild-type and mutant forms of the PDZ domain of Erbin correlate very well with the computed free energy of binding of displaced waters, suggesting a direct relationship between water displacement and peptide affinity. Finally, we show a correlation between the magnitude of the displaced water free energy and the degree of Trp-sensitivity among subtypes of the HTRA PDZ family, indicating a water-mediated mechanism for specificity of peptide binding.
机译:PDZ域对不同的C端肽基序具有众所周知的结合偏好。对于大多数PDZ域,这些基序的形式为[S / T] -W- [I / L / V]。尽管对S / T的偏爱已经通过与PDZ域中的组氨酸发生特定的氢键相互作用而被解释,并且(I / L / V)被掩埋在疏水口袋中,但是Trp特异性的机制在倒数第二个位置到目前为止,仍然未知。在这里,我们应用一种方法来计算显式水分子的自由能,并预测通过Trp结合获得的效能是由于高能水分子向主体中的良好释放所致。对于Erbin的PDZ域的野生型和突变型而言,一系列肽的亲和力与计算的置换水结合自由能非常相关,表明置换水和肽亲和力之间存在直接关系。最后,我们显示了置换的水自由能的大小与HTRA PDZ家族亚型之间的Trp敏感性程度之间的相关性,表明了水介导的肽结合特异性机制。

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