首页> 美国卫生研究院文献>Journal of Virology >The Vaccinia Virus 14-Kilodalton (A27L) Fusion Protein Forms a Triple Coiled-Coil Structure and Interacts with the 21-Kilodalton (A17L) Virus Membrane Protein through a C-Terminal α-Helix
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The Vaccinia Virus 14-Kilodalton (A27L) Fusion Protein Forms a Triple Coiled-Coil Structure and Interacts with the 21-Kilodalton (A17L) Virus Membrane Protein through a C-Terminal α-Helix

机译:牛痘病毒14-Kilodalton(A27L)融合蛋白形成三重螺旋结构并通过C末端α-螺旋与21-Kilodalton(A17L)病毒膜蛋白相互作用。

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摘要

The vaccinia virus 14-kDa protein (encoded by the A27L gene) plays an important role in the biology of the virus, acting in virus-to-cell and cell-to-cell fusions. The protein is located on the surface of the intracellular mature virus form and is essential for both the release of extracellular enveloped virus from the cells and virus spread. Sequence analysis predicts the existence of four regions in this protein: a structureless region from amino acids 1 to 28, a helical region from residues 29 to 37, a triple coiled-coil helical region from residues 44 to 72, and a Leu zipper motif at the C terminus. Circular dichroism spectroscopy, analytical ultracentrifugation, and chemical cross-linking studies of the purified wild-type protein and several mutant forms, lacking one or more of the above regions or with point mutations, support the above-described structural division of the 14-kDa protein. The two contiguous cysteine residues at positions 71 and 72 are not responsible for the formation of 14-kDa protein trimers. The location of hydrophobic residues at the a and d positions on a helical wheel and of charged amino acids in adjacent positions, e and g, suggests that the hydrophobic and ionic interactions in the triple coiled-coil helical region are involved in oligomer formation. This conjecture was supported by the construction of a three-helix bundle model and molecular dynamics. Binding assays with purified proteins expressed in Escherichia coli and cytoplasmic extracts from cells infected with a virus that does not produce the 14-kDa protein during infection (VVindA27L) show that the 21-kDa protein (encoded by the A17L gene) is the specific viral binding partner and identify the putative Leu zipper, the predicted third α-helix on the C terminus of the 14-kDa protein, as the region involved in protein binding. These findings were confirmed in vivo, following transfection of animal cells with plasmid vectors expressing mutant forms of the 14-kDa protein and infected with VVindA27L. We find the structural organization of 14kDa to be similar to that of other fusion proteins, such as hemagglutinin of influenza virus and gp41 of human immunodeficiency virus, except for the presence of a protein-anchoring domain instead of a transmembrane domain. Based on our observations, we have established a structural model of the 14-kDa protein.
机译:牛痘病毒14 kDa蛋白(由A27L基因编码)在病毒生物学中起着重要作用,在病毒与细胞和细胞与细胞的融合中起作用。该蛋白质位于细胞内成熟病毒形式的表面上,对于从细胞释放细胞外被膜病毒和病毒传播都是必不可少的。序列分析预测该蛋白中存在四个区域:氨基酸1至28的无结构区域,残基29至37的螺旋区域,残基44至72的三重螺旋螺旋区域以及Leu拉链基序C总站。纯化的野生型蛋白质和几种突变形式的圆二色光谱,分析超速离心和化学交联研究,缺少一个或多个上述区域或具有点突变,支持上述14 kDa的结构划分蛋白。 71和72位的两个连续半胱氨酸残基与14-kDa蛋白三聚体的形成无关。疏水残基在螺旋轮的a和d位置以及带电氨基酸在相邻位置e和g的位置表明,三重螺旋螺旋区中的疏水和离子相互作用参与了低聚物的形成。这种推测得到了三螺旋束模型的建立和分子动力学的支持。与在大肠杆菌中表达的纯化蛋白和感染了病毒的细胞的细胞质提取物的结合试验(在感染过程中不产生14-kDa蛋白(VVindA27L))表明,21-kDa蛋白(由A17L基因编码)是特异性病毒结合伴侣并确定推定的Leu拉链(14 kDa蛋白质C末端上预测的第三个α-螺旋)为参与蛋白质结合的区域。用表达14-kDa蛋白突变形式的质粒载体转染动物细胞并感染VVindA27L后,在体内证实了这些发现。我们发现14kDa的结构组织类似于其他融合蛋白,例如流感病毒的血凝素和人免疫缺陷病毒的gp41,除了存在蛋白锚定域而不是跨膜域外。基于我们的观察,我们建立了14 kDa蛋白的结构模型。

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