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尽管残基的 Φ 值较高且符合规则,但在天然状态下呈螺旋构象,在折叠过渡态中会采取 β-折叠构象。

A residue in helical conformation in the native state adopts a β-strand conformation in the folding transition state despite its high and canonical Φ-value.

机构信息

Department of Biochemistry, University of Toronto, Toronto, Ontario M5S-1A8, Canada.

出版信息

Proteins. 2012 May;80(5):1343-9. doi: 10.1002/prot.24030. Epub 2012 Feb 13.

Abstract

Delineating structures of the transition states in protein folding reactions has provided great insight into the mechanisms by which proteins fold. The most common method for obtaining this information is Φ-value analysis, which is carried out by measuring the changes in the folding and unfolding rates caused by single amino acid substitutions at various positions within a given protein. Canonical Φ-values range between 0 and 1, and residues displaying high values within this range are interpreted to be important in stabilizing the transition state structure, and to elicit this stabilization through native-like interactions. Although very successful in defining the general features of transition state structures, Φ-value analysis can be confounded when non-native interactions stabilize this state. In addition, direct information on backbone conformation within the transition state is not provided. In the work described here, we have investigated structure formation at a conserved β-bulge (with helical conformation) in the Fyn SH3 domain by characterizing the effects of substituting all natural amino acids at one position within this structural motif. By comparing the effects on folding rates of these substitutions with database-derived local structure propensity values, we have determined that this position adopts a non-native backbone conformation in the folding transition state. This result is surprising because this position displays a high and canonical Φ-value of 0.7. This work emphasizes the potential role of non-native conformations in folding pathways and demonstrates that even positions displaying high and canonical Φ-values may, nevertheless, adopt a non-native conformation in the transition state.

摘要

阐明蛋白质折叠反应过渡态的结构为蛋白质折叠机制提供了重要的认识。获取此信息的最常见方法是 Φ 值分析,该分析通过测量在给定蛋白质的各个位置进行单个氨基酸取代对折叠和展开速率的变化来进行。典型的 Φ 值范围在 0 到 1 之间,在该范围内显示高值的残基被解释为对稳定过渡态结构很重要,并通过类似天然的相互作用来引起这种稳定。尽管 Φ 值分析在定义过渡态结构的一般特征方面非常成功,但当非天然相互作用稳定该状态时,它可能会受到干扰。此外,它没有提供过渡态中骨架构象的直接信息。在本文描述的工作中,我们通过表征在该结构基序的一个位置取代所有天然氨基酸对 Fyn SH3 结构域中保守β-突环(具有螺旋构象)的结构形成进行了研究。通过比较这些取代对折叠速率的影响与数据库衍生的局部结构倾向值,我们确定该位置在折叠过渡态中采用非天然的骨架构象。这一结果令人惊讶,因为该位置显示出高且典型的 Φ 值为 0.7。这项工作强调了非天然构象在折叠途径中的潜在作用,并表明即使是显示高且典型的 Φ 值的位置,在过渡态中也可能采用非天然构象。

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