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泛素的一种设计疏水核心变体的溶液结构与动力学

Solution structure and dynamics of a designed hydrophobic core variant of ubiquitin.

作者信息

Johnson E C, Lazar G A, Desjarlais J R, Handel T M

机构信息

Department of Physics, University of California, Berkeley 94720, USA.

出版信息

Structure. 1999 Aug 15;7(8):967-76. doi: 10.1016/s0969-2126(99)80123-3.

Abstract

BACKGROUND

The recent merger of computation and protein design has resulted in a burst of success in the generation of novel proteins with native-like properties. A critical component of this coupling between theory and experiment is a detailed analysis of the structures and stabilities of designed proteins to assess and improve the accuracy of design algorithms.

RESULTS

Here we report the solution structure of a hydrophobic core variant of ubiquitin, referred to as 1D7, which was designed with the core-repacking algorithm ROC. As a measure of conformational specificity, we also present amide exchange protection factors and backbone and sidechain dynamics. The results indicate that 1D7 is similar to wild-type (WT) ubiquitin in backbone structure and degree of conformational specificity. We also observe a good correlation between experimentally determined sidechain structures and those predicted by ROC. However, evaluation of the core sidechain conformations indicates that, in general, 1D7 has more sidechains in less statistically favorable conformations than WT.

CONCLUSIONS

Our results provide an explanation for the lower stability of 1D7 compared to WT, and suggest modifications to design algorithms that may improve the accuracy with which structure and stability are predicted. The results also demonstrate that core packing can affect conformational flexibility in subtle ways that are likely to be important for the design of function and protein-ligand interactions.

摘要

背景

计算技术与蛋白质设计的近期融合已在生成具有天然样性质的新型蛋白质方面取得了一系列成功。理论与实验之间这种结合的一个关键组成部分是对设计蛋白质的结构和稳定性进行详细分析,以评估和提高设计算法的准确性。

结果

在此我们报告了泛素的一种疏水核心变体(称为1D7)的溶液结构,它是使用核心重排算法ROC设计的。作为构象特异性的一种衡量,我们还展示了酰胺交换保护因子以及主链和侧链动力学。结果表明,1D7在主链结构和构象特异性程度上与野生型(WT)泛素相似。我们还观察到实验确定的侧链结构与ROC预测的侧链结构之间具有良好的相关性。然而,对核心侧链构象的评估表明,总体而言,与WT相比,1D7处于统计学上不太有利构象的侧链更多。

结论

我们的结果解释了1D7与WT相比稳定性较低的原因,并建议对设计算法进行修改,这可能会提高预测结构和稳定性的准确性。结果还表明,核心堆积可以以微妙的方式影响构象灵活性,这可能对功能设计和蛋白质 - 配体相互作用很重要。

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