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对色氨酸笼状小蛋白序列进行反向操作会产生一种无结构分子,该分子仅在添加2,2,2-三氟乙醇后才能折叠成与原始分子相似的结构。

Retro operation on the Trp-cage miniprotein sequence produces an unstructured molecule capable of folding similar to the original only upon 2,2,2-trifluoroethanol addition.

作者信息

Vymětal Jiří, Bathula Sreenivas Reddy, Cerný Jiří, Chaloupková Radka, Zídek Lukáš, Sklenář Vladimír, Vondrášek Jiří

机构信息

Academy of Sciences of the Czech Republic, Center for Biomolecules and Complex Molecular Systems, Institute of Organic Chemistry and Biochemistry, Flemingovo nám. 2, 16610 Prague 6, Czech Republic.

National Center for Biomolecular Research, Faculty of Science, Masaryk University, Kamenice 5, 625 00 Brno, Czech Republic CEITEC, Masaryk University, Kamenice 5, 625 00 Brno, Czech Republic.

出版信息

Protein Eng Des Sel. 2014 Dec;27(12):463-72. doi: 10.1093/protein/gzu046. Epub 2014 Oct 24.

DOI:10.1093/protein/gzu046
PMID:25344682
Abstract

Amino acid sequence and environment are the most important factors determining the structure, stability and dynamics of proteins. To evaluate their roles in the process of folding, we studied a retroversion of the well-described Trp-cage miniprotein in water and 2,2,2-trifluoroethanol (TFE) solution. We show, by circular dichroism spectroscopy and nuclear magnetic resonance (NMR) measurement, that the molecule has no stable structure under conditions in which the Trp-cage is folded. A detectable stable structure of the retro Trp-cage, with the architecture similar to that of the original Trp-cage, is established only upon addition of TFE to 30% of the total solvent volume. The retro Trp-cage structure shows a completely different pattern of stabilizing contacts between amino acid residues, involving the guanidinium group of arginine and the aromatic group of tryptophan. The commonly used online prediction methods for protein and peptide structures Robetta and PEP-FOLD failed to predict that the retro Trp-cage is unstructured under default prediction conditions. On the other hand, both methods provided structures with a fold similar to those of the experimentally determined NMR structure in water/TFE but with different contacts between amino acids.

摘要

氨基酸序列和环境是决定蛋白质结构、稳定性和动力学的最重要因素。为了评估它们在折叠过程中的作用,我们研究了在水中和2,2,2-三氟乙醇(TFE)溶液中已被充分描述的色氨酸笼状小蛋白的逆向变体。通过圆二色光谱和核磁共振(NMR)测量,我们发现,在色氨酸笼状蛋白折叠的条件下,该分子没有稳定的结构。只有在向总溶剂体积中加入30%的TFE后,才会形成一种可检测到的稳定的逆向色氨酸笼状结构,其结构与原始色氨酸笼状结构相似。逆向色氨酸笼状结构在氨基酸残基之间显示出完全不同的稳定接触模式,涉及精氨酸的胍基和色氨酸的芳香基团。常用的蛋白质和肽结构在线预测方法Robetta和PEP-FOLD未能预测出在默认预测条件下逆向色氨酸笼状结构是无结构的。另一方面,这两种方法提供的结构折叠与在水/TFE中通过实验确定的NMR结构相似,但氨基酸之间的接触不同。

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