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三氟乙醇溶液中的螺旋传播。

Helix propagation in trifluoroethanol solutions.

作者信息

Storrs R W, Truckses D, Wemmer D E

机构信息

Department of Chemistry, University of California, Berkeley 94720.

出版信息

Biopolymers. 1992 Dec;32(12):1695-702. doi: 10.1002/bip.360321211.

Abstract

Helix propagation of the S-peptide sequence (residues 1-19 of ribonuclease A) in 2,2,2-trifluoroethanol (TFE) solutions has been investigated with CD and nmr Overhauser effect spectroscopies. In this study, the S-peptide helix is covalently initiated at the N-terminus through disulfide bonds to a helix scaffold derived from the N-terminal sequence of the bee venom peptide apamin. The entire S-peptide sequence of this hybrid sequence peptide becomes helical at high proportions of TFE. Residues 14-19 of the S-peptide are not helical in the free peptide in TFE, nor are they helical in ribonuclease A. The "helix stop" signal encoded by the S-peptide sequence near residue 13 does not persist at high TFE with this hybrid sequence peptide. The helix-stabilizing effects of TFE are due at least in part to facilitated propagation of an extant helix. This stabilizing effect appears to be a general solvation effect and not due to specific interaction of the helical peptide with TFE. Specifically these data support the idea that TFE destabilizes the coil state by less effective hydrogen bonding of the peptide amide to the solvent.

摘要

利用圆二色光谱(CD)和核磁共振奥弗豪泽效应光谱(nmr Overhauser effect spectroscopies)研究了核糖核酸酶A的S肽序列(1 - 19位残基)在2,2,2 - 三氟乙醇(TFE)溶液中的螺旋传播情况。在本研究中,S肽螺旋通过二硫键在N端与源自蜂毒肽蜂毒明肽N端序列的螺旋支架共价起始。该杂合序列肽的整个S肽序列在高比例TFE条件下会形成螺旋结构。S肽的14 - 19位残基在TFE中的游离肽中不形成螺旋,在核糖核酸酶A中也不形成螺旋。13位残基附近的S肽序列所编码的“螺旋终止”信号在这种杂合序列肽处于高TFE浓度时并不持续存在。TFE的螺旋稳定作用至少部分归因于对现有螺旋传播的促进。这种稳定作用似乎是一种普遍的溶剂化效应,而非螺旋肽与TFE的特异性相互作用。具体而言,这些数据支持了这样一种观点,即TFE通过使肽酰胺与溶剂形成的氢键效率降低来使卷曲态不稳定。

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