首页> 外文期刊>Journal of Molecular Biology >INSIGHT INTO A RANDOM COIL CONFORMATION AND AN ISOLATED HELIX - STRUCTURAL AND DYNAMICAL CHARACTERISATION OF THE C-HELIX PEPTIDE FROM HEN LYSOZYME
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INSIGHT INTO A RANDOM COIL CONFORMATION AND AN ISOLATED HELIX - STRUCTURAL AND DYNAMICAL CHARACTERISATION OF THE C-HELIX PEPTIDE FROM HEN LYSOZYME

机译:观察溶菌酶中C螺旋肽的随机螺旋构型和分离的螺旋-结构和动力学特征。

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A 17 residue peptide corresponding to the C-helix of hen lysozyme (residues 86 to 102) has been investigated in detail to assess the factors that determine its conformation in both aqueous and trifluoroethangl (TFE) solutions. A thorough characterisation of the peptide by CD and NMR techniques under both conditions has been performed including the determination of complete NMR proton sequential assignments, and measurement of NOE effects, (3)JHN alpha coupling constants, temperature coefficients and residue-specific hydrogen-exchange rates. In water, the peptide adopts a largely unstructured conformation and NMR data, particularly coupling constants and chemical shift deviations, have been shown to agree closely with predictions from a model for a random coil based on the phi,psi distributions in a protein database. This indicates that under these conditions the intrinsic conformational preferences of the individual amino acid residues are the dominating factors that determine the population of conformers adopted. With increasing concentrations of TFE a cooperative transition to an extensively helical conformation occurs and the resultant changes in C alpha H chemical shifts have been shown to correlate with the changes in phi,psi populations. Using NOE and coupling constant data for this state, an ensemble of structures has been calculated and provides a model for a helix in the absence of tertiary interactions. In this model fluctuations, which increase in amplitude towards the termini, occur about the average helical phi,psi angles and are responsible for increasing the values of (3)JHN alpha coupling constants above those anticipated for a static helix. The residue-specific rates of hydrogen exchange for the peptide in 50% TFE-d(3) are consistent with such a model, the maximum protection from exchange being observed for residues in the centre of the helix. (C) 1996 Academic Press Limited. [References: 59]
机译:已经详细研究了对应于鸡溶菌酶C螺旋的17个残基肽(残基86至102),以评估决定其在水溶液和三氟乙醇(TFE)溶液中构象的因素。已通过CD和NMR技术在两种条件下对肽进行了全面表征,包括确定完整的NMR质子顺序分配和NOE效应的测量,(3)JHNα偶联常数,温度系数和残基特异性氢交换费率。在水中,该肽采用的是高度非结构化的构象,并且NMR数据,特别是偶联常数和化学位移偏差,已证明与基于蛋白质数据库中phi,psi分布的随机线圈模型的预测非常吻合。这表明在这些条件下,各个氨基酸残基的固有构象偏好是决定采用的构象子总数的主要因素。随着TFE浓度的增加,发生了向广泛螺旋构象的协同过渡,并且已证明C alpha H化学位移的最终变化与phi,psi群体的变化相关。使用NOE并为此状态耦合常数数据,已计算出结构的整体,并为不存在第三级相互作用的螺旋提供了模型。在该模型中,朝向终端的幅度增加的波动大约发生在平均螺旋phi,psi角附近,并导致(3)JHN alpha耦合常数的值增加到高于静态螺旋所预期的值。肽在50%TFE-d(3)中的氢交换残基特异性速率与这种模型一致,在螺旋中心观察到最大的交换保护作用。 (C)1996 Academic Press Limited。 [参考:59]

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