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首页> 外文期刊>Journal of Molecular Biology >Characterizing a partially folded intermediate of the villin headpiece domain under non-denaturing conditions: Contribution of His41 to the pH-dependent stability of the N-terminal subdomain
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Characterizing a partially folded intermediate of the villin headpiece domain under non-denaturing conditions: Contribution of His41 to the pH-dependent stability of the N-terminal subdomain

机译:在非变性条件下表征villin头域的部分折叠中间体:His41对N末端亚结构域的pH依赖性稳定性的贡献

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摘要

The contribution of interactions involving the imidazole ring of His41 to the pH-dependent stability of the villin headpiece (HP67) N-terminal subdomain has been investigated by nuclear magnetic resonance (NMR) spin relaxation. NMR-derived backbone N-H order parameters (S-2) for wild-type (WT) HP67 and H41Y HP67 indicate that reduced conformational flexibility of the N-terminal subdomain in WT HP67 is due to intramolecular interactions with the His41 imidazole ring. These interactions, together with desolvation effects, contribute to significantly depress the pK(a), of the buried imidazole ring in the native state. N-15 R-1p relaxation dispersion data indicate that WT HP67 populates a partially folded intermediate state that is 10.9 kJ mol(-1) higher in free energy than the native state under non-denaturing conditions at neutral pH. The partially folded intermediate is characterized as having an unfolded N-terminal subdomain while the C-terminal subdomain retains a native-like fold. Although the majority of the residues in the N-terminal subdomain sample a random-coil distribution of conformations, deviations of backbone amide H-1 and N-15 chemical shifts from canonical random-coil values for residues within 5 angstrom of the His41 imidazole ring indicate that a significant degree of residual structure is maintained in the partially folded ensemble. The pH-dependence of exchange broadening is consistent with a linear three-state exchange model whereby unfolding of the N-terminal subdomain is coupled to titration of His41 in the partially folded intermediate with a pK(a,I) = 5.69 +/- 0.07. Although maintenance of residual interactions with the imidazole ring in the unfolded N-terminal subdomain appears to reduce pK(a,I) compared to model histidine compounds, protonation. of His41 disrupts these interactions and reduces the difference in free energy between the native state and partially folded intermediate under acidic conditions. In addition, chemical shift changes for residues Lys70-Phe76 in the C-terminal subdomain suggest that the HP67 actin binding site is disrupted upon unfolding of the N-terminal subdomain, providing a potential mechanism for regulating the villin-dependent bundling of actin filaments. (c) 2005 Elsevier Ltd. All rights reserved.
机译:已通过核磁共振(NMR)自旋弛豫研究了涉及His41的咪唑环的相互作用对villin头饰(HP67)N末端亚结构域的pH依赖性稳定性的影响。野生型(WT)HP67和H41Y HP67的NMR衍生主链N-H有序参数(S-2)表明,WT HP67中N末端亚结构域的构象柔韧性降低是由于与His41咪唑环的分子内相互作用。这些相互作用,以及去溶剂化作用,有助于显着降低天然状态下的咪唑环的pK(a)。 N-15 R-1p弛豫分散数据表明,在中性pH值下非变性条件下,WT HP67的部分折叠中间状态的自由能比天然状态高10.9 kJ mol(-1)。部分折叠的中间体的特征在于具有未折叠的N末端亚结构域,而C末端亚结构域保留了天然样的折叠。尽管N末端亚结构域中的大多数残基都采样为构象的随机螺旋分布,但对于His41咪唑环5埃内的残基,主链酰胺H-1和N-15的化学位移偏离了标准随机螺旋值表示在部分折叠的合奏中保持了很大程度的残留结构。交换拓宽的pH依赖性与线性三态交换模型一致,在该模型中,N末端亚结构域的展开与部分折叠的中间体中His41的滴定相关,pK(a,I)= 5.69 +/- 0.07 。尽管与模型组氨酸化合物相比,维持与未折叠的N末端亚结构域中的咪唑环的残留相互作用似乎会降低pK(a,I),但质子化。在酸性条件下,His41的这些相互作用破坏了这些相互作用并减少了天然状态和部分折叠的中间体之间的自由能差异。此外,C末端亚结构域中残基Lys70-Phe76的化学位移变化表明,HP67肌动蛋白结合位点在N末端亚结构域展开时被破坏,提供了调节肌动蛋白丝的villin依赖性束缚的潜在机制。 (c)2005 Elsevier Ltd.保留所有权利。

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