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血凝素融合肽类似物的结构

Structure of an analog of fusion peptide from hemagglutinin.

作者信息

Dubovskii P V, Li H, Takahashi S, Arseniev A S, Akasaka K

机构信息

Department of Molecular Science, Graduate School of Science and Technology, Kobe University, Japan.

出版信息

Protein Sci. 2000 Apr;9(4):786-98. doi: 10.1110/ps.9.4.786.

Abstract

A 20-residue peptide E5 containing five glutamates, an analog of the fusion peptide of influenza virus hemagglutinin (HA) exhibiting fusion activity at acidic pH lower than 6.0-6.5 was studied by circular dichroism (CD), Fourier transform infrared, and 1H-NMR spectroscopy in water, water/trifluoroethanol (TFE) mixtures, dodecylphosphocholine (DPC) micelles, and phospholipid vesicles. E5 became structurally ordered at pH < or = 6 and the helical content in the peptide increased in the row: water < water/TFE < DPC approximately = phospholipid vesicle while the amount of beta-structure was approximately reverse. 1H-NMR data and line-broadening effect of 5-, 16-doxylstearates on proton resonances of DPC bound peptide showed E5 forms amphiphilic alpha-helix in residues 2-18, which is flexible in 11-18 part. The analysis of the proton chemical shifts of DPC bound and CD intensity at 220 nm of phospholipid bound E5 showed that the pH dependence of helical content is characterized by the same pKa approximately 5.6. Only Glu11 and Glu15 in DPC bound peptide showed such elevated pKas, presumably due to transient hydrogen bond(s) Glu11 (Glu15) deltaCOO- (H+)...HN Glu15 that dispose(s) the side chain of Glu11 (Glu15) residue(s) close to the micelle/water interface. These glutamates are present in the HA-fusion peptide and the experimental half-maximal pH of fusion for HA and E5 peptides is approximately 5.6. Therefore, a specific anchorage of these peptides onto membrane necessary for fusion is likely driven by the protonation of the carboxylate group of Glu11 (Glu15) residue(s) participating in transient hydrogen bond(s).

摘要

一种含有五个谷氨酸的20个残基的肽E5,它是流感病毒血凝素(HA)融合肽的类似物,在低于6.0 - 6.5的酸性pH值下表现出融合活性。通过圆二色性(CD)、傅里叶变换红外光谱和1H - NMR光谱,在水、水/三氟乙醇(TFE)混合物、十二烷基磷酸胆碱(DPC)胶束和磷脂囊泡中对其进行了研究。E5在pH≤6时结构有序,肽中的螺旋含量按以下顺序增加:水<水/TFE<DPC≈磷脂囊泡,而β-结构的量则大致相反。1H - NMR数据以及5,16 - 二氧硬脂酸对DPC结合肽质子共振的线宽扩展效应表明,E5在2 - 18位残基形成两亲性α-螺旋,在11 - 18部分是灵活的。对DPC结合的E5的质子化学位移和磷脂结合的E5在220 nm处的CD强度分析表明,螺旋含量的pH依赖性以相同的pKa约5.6为特征。在DPC结合肽中只有Glu11和Glu15显示出如此升高的pKa,可能是由于Glu11(Glu15)δCOO-(H +)...HN Glu15形成的瞬时氢键,使Glu11(Glu15)残基的侧链靠近胶束/水界面。这些谷氨酸存在于HA融合肽中,HA和E5肽融合的实验半数最大pH约为5.6。因此,这些肽在膜上融合所需的特异性锚定可能是由参与瞬时氢键的Glu11(Glu15)残基羧基的质子化驱动的。

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