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痘苗病毒包膜蛋白A27L的寡聚结构对于结合细胞表面的肝素和硫酸乙酰肝素至关重要:一种使用位点特异性诱变的结构和功能研究方法。

The oligomeric structure of vaccinia viral envelope protein A27L is essential for binding to heparin and heparan sulfates on cell surfaces: a structural and functional approach using site-specific mutagenesis.

作者信息

Ho Yu, Hsiao Jye-Chian, Yang Min-Hsiang, Chung Che-Sheng, Peng Yu-Chang, Lin Ta-Hsien, Chang Wen, Tzou Der-Lii M

机构信息

Institute of Chemistry, Academia Sinica, 128 Yen-Chiu-Yuan Rd., Sec. 2, Nankang, Taipei 11529, Taiwan, R.O.C.

出版信息

J Mol Biol. 2005 Jun 24;349(5):1060-71. doi: 10.1016/j.jmb.2005.04.024.

Abstract

The soluble domain of the self-assembly vaccinia virus envelope protein A27L, sA27L-aa, consists of a flexible extended coil at the N terminus and a rigid hydrophobic coiled-coil region at the C terminus. In the former, a basic strip of 12 residues is responsible for binding to cell-surface heparan sulfates. Although the latter is believed to mediate self-assembly, its biological role is unclear. However, an in vitro bioassay showed that peptides comprising the 12 residue basic region alone failed to interact with heparin, suggesting that the C-terminal coiled-coil region might serve an indispensable role in biological function. To explore this structural and functional relationship, we performed site-specific mutagenesis in an attempt to specifically disrupt the hydrophobic core of the coiled coil. Three single mutants, L47A, L51A, and L54A, and one triple mutant, L47,51,54A, were expressed and purified from Escherichia coli. The physical properties of the mutants were carefully examined by gel-filtration chromatography, CD, and NMR spectroscopy, and the biological activities were assessed by an in vitro SPR bioassay and three in vivo bioassays: binding to cells, blocking virus infection and blocking cell fusion. We showed that the L47A mutant, which is similar to the parental sA27L-aa in forming a hexamer, is biologically active. L51A and L54A mutants form tetramers and are less active. Notably, in the triple mutant, the self-assembly hydrophobic core structure is uncoiled; as a consequence, the tetrameric structure is biologically inactive. Thus, we conclude that the leucine residues, in particular Leu51 and Leu54, sustain the hydrophobic core structure that is essential for the biological function of vaccinia virus envelope protein A27L, binding to cell-surface heparan sulfate.

摘要

自组装痘苗病毒包膜蛋白A27L的可溶性结构域sA27L-aa,在N端由一个柔性延伸卷曲结构组成,在C端由一个刚性疏水卷曲螺旋区域组成。在前者中,一条由12个残基组成的碱性条带负责与细胞表面硫酸乙酰肝素结合。尽管后者被认为介导自组装,但其生物学作用尚不清楚。然而,一项体外生物测定表明,仅包含12个残基碱性区域的肽无法与肝素相互作用,这表明C端卷曲螺旋区域可能在生物学功能中发挥不可或缺的作用。为了探索这种结构与功能的关系,我们进行了位点特异性诱变,试图特异性破坏卷曲螺旋的疏水核心。从大肠杆菌中表达并纯化了三个单突变体L47A、L51A和L54A,以及一个三突变体L47,51,54A。通过凝胶过滤色谱、圆二色光谱和核磁共振光谱仔细检查了突变体的物理性质,并通过体外表面等离子体共振生物测定和三种体内生物测定评估了其生物学活性:与细胞结合、阻断病毒感染和阻断细胞融合。我们发现,与亲本sA27L-aa形成六聚体相似的L47A突变体具有生物学活性。L51A和L54A突变体形成四聚体且活性较低。值得注意的是,在三突变体中,自组装疏水核心结构解旋;因此,四聚体结构无生物学活性。因此,我们得出结论,亮氨酸残基,特别是Leu51和Leu54,维持了疏水核心结构,这对于痘苗病毒包膜蛋白A27L与细胞表面硫酸乙酰肝素结合的生物学功能至关重要。

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