首页> 外文期刊>Journal of Molecular Biology >PREDICTION OF QUATERNARY STRUCTURE OF COILED COILS - APPLICATION TO MUTANTS OF THE GCN4 LEUCINE ZIPPER
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PREDICTION OF QUATERNARY STRUCTURE OF COILED COILS - APPLICATION TO MUTANTS OF THE GCN4 LEUCINE ZIPPER

机译:卷曲线圈的四级结构预测-在GCN4亮氨酸拉链中的应用

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Using a simplified protein model, the equilibrium between different oligomeric species of the wild-type GCN4 leucine zipper and seven of its mutants have been predicted. Over the entire experimental concentration range, agreement with experiment is found in five cases, while in two cases agreement is found over a portion of the concentration range. These studies demonstrate a methodology for predicting coiled coil quaternary structure and allow for the dissection of the interactions responsible for the global fold. In agreement with the conclusion of Harbury et al., the results of the simulations indicate that the pattern of hydrophobic and hydrophilic residues alone is insufficient to define a protein's three-dimensional structure. In addition, these simulations indicate that the degree of chain association is determined by the balance between specific side-chain packing preferences and the entropy reduction associated with side-chain burial in higher-order multimers. [References: 33]
机译:使用简化的蛋白质模型,可以预测野生型GCN4亮氨酸拉链的不同寡聚体及其七个突变体之间的平衡。在整个实验浓度范围内,有五种情况与实验一致,而在两种情况下,在一部分浓度范围内发现有一致性。这些研究证明了预测卷曲四元结构的方法,并允许解剖负责全局折叠的相互作用。与Harbury等人的结论一致,模拟结果表明,仅疏水和亲水残基的模式不足以定义蛋白质的三维结构。此外,这些模拟表明,链缔合的程度取决于特定的侧链堆积偏好与高阶多聚体中与侧链埋葬相关的熵降低之间的平衡。 [参考:33]

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