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Structural basis of neurophysin hormone specificity: Geometry polarity and polarizability in aromatic ring interactions.

机译:神经物理激素特异性的结构基础:芳香环相互作用中的几何结构极性和极化性。

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摘要

The structural origins of the specificity of the neurophysin hormone-binding site for an aromatic residue in peptide position 2 were explored by analyzing the binding of a series of peptides in the context of the crystal structure of liganded neurophysin. A new modeling method for describing the van der Waals surface of binding sites assisted in the analysis. Particular attention was paid to the unusually large (5 kcal/mol) difference in binding free energy between Phe and Leu in position 2, a value representing more than three times the maximum expected based on hydrophobicity alone, and additionally remarkable since modeling indicated that the Leu side chain was readily accommodated by the binding pocket. Although evidence was obtained of a weak thermodynamic linkage between the binding interactions of the residue 2 side chain and of the peptide alpha-amino group, two factors are considered central. (1) The bound Leu side chain can establish only one-third of the van der Waals contacts available to a Phe side chain. (2) The bound Phe side chain appears to be additionally stabilized relative to Leu by more favorable dipole and induced dipole interactions with nonaromatic polar and sulfur ligands in the binding pocket, as evidenced by examination of its interactions in the pocket, analysis of the detailed energetics of transfer of Phe and Leu side chains from water to other phases, and comparison with thermodynamic and structural data for the binding of residue 1 side chains in this system. While such polar interactions of aromatic rings have been previously observed, the present results suggest their potential for significant thermodynamic contributions to protein structure and ligand recognition.
机译:通过分析配体神经物理的晶体结构中一系列肽的结合,探索了神经物理激素结合位点对肽位置2上芳香族残基的特异性的结构起源。用于描述结合位点的范德华表面的新建模方法有助于分析。特别要注意位置2的Phe和Leu之间的结合自由能异常大(5 kcal / mol)差异,该值代表仅基于疏水性的最大预期期望值的三倍以上,并且由于建模表明Leu侧链很容易被装订袋容纳。尽管获得的证据表明残基2侧链与肽α-氨基的结合相互作用之间的热力学联系较弱,但两个因素被认为是重要的。 (1)结合的Leu侧链只能建立Phe侧链可用的范德华接触的三分之一。 (2)结合的Phe侧链相对于Leu似乎通过更有利的偶极子和与结合口袋中非芳族极性和硫配体的诱导偶极子相互作用而被进一步稳定,这通过检查其在口袋中的相互作用来证明。 Phe和Leu侧链从水转移到其他相的能量学,并与该系统中残基1侧链结合的热力学和结构数据进行比较。尽管先前已经观察到芳环的这种极性相互作用,但目前的结果表明它们潜在地对蛋白质结构和配体识别具有重大的热力学贡献。

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