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三氟乙醇诱导β-乳球蛋白的β→α转变:通过2H、17O和19F磁共振弛豫色散研究水合作用和共溶剂结合

Trifluoroethanol-induced beta --> alpha transition in beta-lactoglobulin: hydration and cosolvent binding studied by 2H, 17O, and 19F magnetic relaxation dispersion.

作者信息

Kumar Sandeep, Modig Kristofer, Halle Bertil

机构信息

Department of Biophysical Chemistry, Lund University, SE-22100 Lund, Sweden.

出版信息

Biochemistry. 2003 Nov 25;42(46):13708-16. doi: 10.1021/bi035330l.

DOI:10.1021/bi035330l
PMID:14622017
Abstract

Alcohols, such as 2,2,2-trifluoroethanol (TFE), have been shown to induce a cooperative transition to an open helical structure in many proteins, but the underlying molecular mechanism has not been identified. Here, we employ the technique of magnetic relaxation dispersion (MRD) to study the TFE-induced beta --> alpha transition of beta-lactoglobulin at pH 2.4. Unlike traditional techniques that focus on protein secondary structure, the MRD method directly monitors the solvent, providing quantitative information about preferential solvation and solvent penetration and about the overall size and structural integrity of the protein. In this multinuclear MRD study, we use the (2)H and (17)O resonances to examine hydration and the (19)F resonance to study TFE. The transformation from the native to the helical state via an intermediate state at 300 K is found to be accompanied by a progressive expansion of the protein and loss of specific long-lived hydration sites. The observation of (17)O and (19)F dispersions from the helical state shows that water and TFE penetrate the protein. The MRD data indicate a strong accumulation of TFE at the surface as well as in the interior of the protein. At 277 K, BLG is much less affected by TFE, remaining in the native state at 16% TFE, but adopting a nonnative structure at 30% TFE. This nonnative structure is not penetrated by long-lived water molecules. The implications of these findings for the mechanism of TFE-induced structural transformations are discussed.

摘要

醇类,如2,2,2-三氟乙醇(TFE),已被证明能诱导许多蛋白质协同转变为开放的螺旋结构,但其潜在的分子机制尚未明确。在此,我们采用磁弛豫色散(MRD)技术研究pH 2.4条件下TFE诱导的β-乳球蛋白β→α转变。与专注于蛋白质二级结构的传统技术不同,MRD方法直接监测溶剂,提供有关优先溶剂化、溶剂渗透以及蛋白质整体大小和结构完整性的定量信息。在这项多核MRD研究中,我们利用²H和¹⁷O共振来研究水合作用,利用¹⁹F共振来研究TFE。发现在300 K时,通过中间态从天然态向螺旋态的转变伴随着蛋白质的逐渐膨胀以及特定长寿命水合位点的丧失。从螺旋态观察到的¹⁷O和¹⁹F色散表明水和TFE渗透到了蛋白质中。MRD数据表明TFE在蛋白质表面以及内部有强烈的积累。在277 K时,β-乳球蛋白受TFE的影响小得多,在16%的TFE浓度下保持天然态,但在30%的TFE浓度下会形成非天然结构。这种非天然结构没有被长寿命水分子渗透。讨论了这些发现对TFE诱导结构转变机制的影响。

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