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首页> 外文期刊>Biochemistry >Structural and dynamical properties of a denatured protein. Heteronuclear 3D NMR experiments and theoretical simulations of lysozyme in 8 M urea
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Structural and dynamical properties of a denatured protein. Heteronuclear 3D NMR experiments and theoretical simulations of lysozyme in 8 M urea

机译:变性蛋白质的结构和动力学性质。异核3D NMR实验和8 M尿素中溶菌酶的理论模拟

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摘要

Oxidized and reduced hen lysozyme denatured in 8 M urea at low pH have been studied in detail by NMR methods. 15N correlated NOESY and TOCSY experiments have provided near complete sequential assignment for both 1H and 15N resonances. Over 900 NOEs, including 130 (i, i + 2) and 23 (i, i + 3) NOEs, could be identified by analysis of the NOESY spectra of the denatured states, and 3J(HN, Halpha) coupling constants and 15N relaxation rates have been measured. The coupling constant and NOE data were analyzed by comparisons with theoretical predictions from a random coil polypeptide model based on amino acid specific phi,psi distributions extracted from the protein data bank. There is significant agreement between predicted and experimental NMR parameters suggesting that local conformations of the denatured states are largely determined by short-range interactions within the polypeptide chain. This result is supported by the observation that the chemical shift, coupling constant, and NOE data are little affected by whether or not the four disulfide bridge cross-links are formed in the denatured protein. The relaxation data, however, show significant differences between the oxidized and reduced protein. Analysis of the relaxation data in terms of simple dynamics models provides evidence for weak clustering of hydrophobic groups near tryptophan residues and increased barriers to motion in the more compact conformers formed when the polypeptide chain is cross-linked by the disulfide bridges. Using this information, a structural description of these denatured states is given in terms of an ensemble of conformers, which have a complex relationship between their local and global characteristics.
机译:已通过NMR方法详细研究了在8M尿素中在低pH条件下变性的氧化和还原的鸡溶菌酶。 15N相关的NOESY和TOCSY实验已经为1H和15N共振提供了几乎完整的顺序分配。通过分析变性态的NOESY光谱,3J(HN,Halpha)耦合常数和15N弛豫,可以识别出900多种NOE,包括130(i,i + 2)和23(i,i + 3)种NOE。费率已被测量。通过与随机卷曲多肽模型的理论预测进行比较,分析耦合常数和NOE数据,该模型基于从蛋白质数据库中提取的氨基酸特异性phi,psi分布。预测的和实验的NMR参数之间存在显着的一致性,表明变性状态的局部构象主要由多肽链内的短程相互作用决定。该结果得到以下观察结果的支持:化学位移,偶合常数和NOE数据几乎不受变性蛋白质中是否形成四个二硫键的影响。然而,弛豫数据显示了氧化和还原蛋白之间的显着差异。根据简单的动力学模型对松弛数据进行分析,为色氨酸残基附近的疏水基团弱聚集提供了证据,并且当多肽链被二硫键交联时,在形成的更紧凑的构象异构体中,运动障碍增加了。利用这些信息,可以根据构象体的整体给出这些变性状态的结构描述,所述构象体的局部特征和全局特征之间具有复杂的关系。

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