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三氟乙醇诱导β-乳球蛋白α-螺旋结构的稳定:对非层次蛋白质折叠的启示

Trifluoroethanol-induced stabilization of the alpha-helical structure of beta-lactoglobulin: implication for non-hierarchical protein folding.

作者信息

Shiraki K, Nishikawa K, Goto Y

机构信息

Department of Biology, Faculty of Science, Osaka University, Japan.

出版信息

J Mol Biol. 1995 Jan 13;245(2):180-94. doi: 10.1006/jmbi.1994.0015.

Abstract

Trifluoroethanol (TFE) is known to stabilize the alpha-helical structure in proteins and their fragments. However, the relationship between the TFE-induced structures and the native structure is not clear. Here we show that beta-lactoglobulin, which consists predominantly of beta-sheets, exhibited a markedly high propensity to form an alpha-helical structure in the presence of TFE, as measured by far-UV circular dichroism. A cooperative transformation from the beta-sheet structure to an alpha-helical structure occurred at a TFE concentration between 10% and 20%. These results were in contrast to a gradual beta-sheet to alpha-helix transition of the constant fragment of the immunoglobulin light chain, which is also a beta-sheet protein. To understand the significance of the high helical propensity of beta-lactoglobulin, we measured the TFE-induced conformational transition of more than 20 proteins of various secondary structural types. Whereas the alpha-helical proteins showed a propensity to form an extensive helical structure in TFE, the helical propensity of proteins with a low helical content in the native state varied. The helical content in TFE was correlated more with the helical content predicted by a secondary structure prediction than with the helical content of the native structure, suggesting that the stability of the helical structure in TFE is determined by local interactions between nearby amino acid residues. Our results suggest that an alpha-helical intermediate can accumulate during the refolding process of beta-lactoglobulin and that a hierarchical model of protein folding is not necessarily true for some beta-sheet proteins including beta-lactoglobulin.

摘要

已知三氟乙醇(TFE)能稳定蛋白质及其片段中的α-螺旋结构。然而,TFE诱导的结构与天然结构之间的关系尚不清楚。在此我们表明,主要由β-折叠组成的β-乳球蛋白,在TFE存在的情况下,通过远紫外圆二色性测量显示出形成α-螺旋结构的显著高倾向。在TFE浓度为10%至20%之间时,发生了从β-折叠结构到α-螺旋结构的协同转变。这些结果与免疫球蛋白轻链恒定片段(也是一种β-折叠蛋白)从β-折叠到α-螺旋的逐渐转变形成对比。为了理解β-乳球蛋白高螺旋倾向的意义,我们测量了20多种不同二级结构类型蛋白质的TFE诱导的构象转变。α-螺旋蛋白在TFE中显示出形成广泛螺旋结构的倾向,而天然状态下螺旋含量低的蛋白质的螺旋倾向各不相同。TFE中的螺旋含量与二级结构预测所预测的螺旋含量的相关性,比与天然结构的螺旋含量的相关性更大,这表明TFE中螺旋结构的稳定性是由附近氨基酸残基之间的局部相互作用决定的。我们的结果表明,在β-乳球蛋白的重折叠过程中可能会积累α-螺旋中间体,并且对于包括β-乳球蛋白在内的一些β-折叠蛋白,蛋白质折叠的层次模型不一定成立。

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