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利用高分辨率和固态核磁共振光谱法解析HIV-1编码的病毒蛋白U跨膜锚定结构域的溶液结构和取向

Solution structure and orientation of the transmembrane anchor domain of the HIV-1-encoded virus protein U by high-resolution and solid-state NMR spectroscopy.

作者信息

Wray V, Kinder R, Federau T, Henklein P, Bechinger B, Schubert U

机构信息

Department of Molecular Structure Research, Gesellschaft für Biotechnologische Forschung, Braunschweig, Germany.

出版信息

Biochemistry. 1999 Apr 20;38(16):5272-82. doi: 10.1021/bi982755c.

Abstract

The structure of the membrane anchor domain (VpuMA) of the HIV-1-specific accessory protein Vpu has been investigated in solution and in lipid bilayers by homonuclear two-dimensional and solid-state nuclear magnetic resonance spectroscopy, respectively. Simulated annealing calculations, using the nuclear Overhauser enhancement data for the soluble synthetic peptide Vpu1-39 (positions Met-1-Asp-39) in an aqueous 2,2,2-trifluoroethanol (TFE) solution, afford a compact well-defined U-shaped structure comprised of an initial turn (residues 1-6) followed by a linker (7-9) and a short helix on the N-terminal side (10-16) and a further longer helix on the C-terminal side (22-36). The side chains of the two aromatic residues (Trp-22 and Tyr-29) in the longer helix are directed toward the center of the molecule around which the hydrophobic core of the folded VpuMA is positioned. As the observed solution structure is inconsistent with the formation of ion-conductive membrane pores defined previously for VpuMA in planar lipid bilayers, the isolated VpuMA domain as peptide Vpu1-27 was investigated in oriented phospholipid bilayers by proton-decoupled 15N cross polarization solid-state NMR spectroscopy. The line widths and chemical shift data of three selectively 15N-labeled peptides are consistent with a transmembrane alignment of a helical polypeptide. Chemical shift tensor calculations imply that the data sets are compatible with a model in which the nascent helices of the folded solution structure reassemble to form a more regular linear alpha-helix that lies parallel to the bilayer normal with a tilt angle of </=30 degrees. The arrangement of the membrane-associated structures described previously for the cytoplasmic domain and for the anchor domain of Vpu identified in this work is discussed.

摘要

分别通过同核二维核磁共振光谱法和固态核磁共振光谱法,对HIV-1特异性辅助蛋白Vpu的膜锚定结构域(VpuMA)在溶液中和脂质双层中的结构进行了研究。利用2,2,2-三氟乙醇(TFE)水溶液中可溶性合成肽Vpu1-39(Met-1-Asp-39位点)的核Overhauser增强数据进行模拟退火计算,得到了一个紧凑且明确的U形结构,该结构由一个起始转角(残基1-6)、一个连接子(7-9)、N端侧的一个短螺旋(10-16)和C端侧的一个更长的螺旋(22-36)组成。较长螺旋中的两个芳香族残基(Trp-22和Tyr-29)的侧链指向分子中心,折叠后的VpuMA的疏水核心围绕该中心定位。由于观察到的溶液结构与先前在平面脂质双层中定义的VpuMA离子传导膜孔的形成不一致,因此通过质子去耦15N交叉极化固态核磁共振光谱法,在定向磷脂双层中研究了作为肽Vpu1-27的分离VpuMA结构域。三个选择性15N标记肽的线宽和化学位移数据与螺旋多肽的跨膜排列一致。化学位移张量计算表明,这些数据集与一个模型兼容,在该模型中,折叠溶液结构中的新生螺旋重新组装形成一个更规则的线性α-螺旋,该螺旋平行于双层法线,倾斜角≤30度。本文讨论了先前描述的Vpu细胞质结构域和锚定结构域的膜相关结构的排列。

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