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用(19)F NMR 测量载脂蛋白 E3 和 E4 之间的结构差异。

Structural differences between apolipoprotein E3 and E4 as measured by (19)F NMR.

机构信息

Department of Biochemistry and Molecular Biophysics, Washington University School of Medicine, St. Louis, Missouri 63110, USA.

出版信息

Protein Sci. 2010 Jan;19(1):66-74. doi: 10.1002/pro.283.

Abstract

The apolipoprotein E family contains three major isoforms (ApoE4, E3, and E2) that are directly involved with lipoprotein metabolism and cholesterol transport. ApoE3 and apoE4 differ in only a single amino acid with an arginine in apoE4 changed to a cysteine at position 112 in apoE3. Yet only apoE4 is recognized as a risk factor for Alzheimer's disease. Here we used (19)F NMR to examine structural differences between apoE4 and apoE3 and the effect of the C-terminal domain on the N-terminal domain. After incorporation of 5-(19)F-tryptophan the 1D (19)F NMR spectra were compared for the N-terminal domain and for the full length proteins. The NMR spectra of the N-terminal region (residues 1-191) are reasonably well resolved while those of the full length wild-type proteins are broad and ill-defined suggesting considerable conformational heterogeneity. At least four of the seven tryptophan residues in the wild type protein appear to be solvent exposed. NMR spectra of the wild-type proteins were compared to apoE containing four mutations in the C-terminal region that gives rise to a monomeric form either of apoE3 under native conditions (Zhang et al., Biochemistry 2007; 46: 10722-10732) or apoE4 in the presence of 1 M urea. For either wild-type or mutant proteins the differences in tryptophan resonances in the N-terminal region of the protein suggest structural differences between apoE3 and apoE4. We conclude that these differences occur both as a consequence of the Arg158Cys mutation and as a consequence of the interaction with the C-terminal domain.

摘要

载脂蛋白 E 家族包含三种主要的异构体(ApoE4、E3 和 E2),它们直接参与脂蛋白代谢和胆固醇转运。ApoE3 和 apoE4 仅在一个氨基酸上有所不同,即 apoE4 中的精氨酸在 apoE3 中变为第 112 位的半胱氨酸。然而,只有 apoE4 被认为是阿尔茨海默病的危险因素。在这里,我们使用 (19)F NMR 来研究 apoE4 和 apoE3 之间的结构差异,以及 C 末端结构域对 N 末端结构域的影响。在掺入 5-(19)F-色氨酸后,比较了 N 末端结构域和全长蛋白质的 1D (19)F NMR 谱。N 末端区域(残基 1-191)的 NMR 谱得到了很好的分辨,而全长野生型蛋白质的 NMR 谱则很宽且难以确定,表明存在相当大的构象异质性。在野生型蛋白质中,至少有七个色氨酸残基中的四个似乎暴露在溶剂中。将野生型蛋白质的 NMR 谱与含有 C 末端四个突变的 apoE 进行比较,这些突变导致在天然条件下形成单体形式的 apoE3(Zhang 等人,生物化学 2007;46:10722-10732)或存在 1 M 脲的 apoE4。对于野生型或突变蛋白,N 末端区域色氨酸共振的差异表明 apoE3 和 apoE4 之间存在结构差异。我们得出的结论是,这些差异既是 Arg158Cys 突变的结果,也是与 C 末端结构域相互作用的结果。

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