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牛痘病毒 A27 蛋白的晶体结构揭示了其功能的一种新结构,对于其与 A26 蛋白的形成复合物至关重要。

Crystal structure of vaccinia viral A27 protein reveals a novel structure critical for its function and complex formation with A26 protein.

机构信息

Institute of Biological Chemistry, Academia Sinica, Taipei, Taiwan.

出版信息

PLoS Pathog. 2013;9(8):e1003563. doi: 10.1371/journal.ppat.1003563. Epub 2013 Aug 22.

Abstract

Vaccinia virus envelope protein A27 has multiple functions and is conserved in the Orthopoxvirus genus of the poxvirus family. A27 protein binds to cell surface heparan sulfate, provides an anchor for A26 protein packaging into mature virions, and is essential for egress of mature virus (MV) from infected cells. Here, we crystallized and determined the structure of a truncated form of A27 containing amino acids 21-84, C71/72A (tA27) at 2.2 Å resolution. tA27 protein uses the N-terminal region interface (NTR) to form an unexpected trimeric assembly as the basic unit, which contains two parallel α-helices and one unusual antiparallel α-helix; in a serpentine way, two trimers stack with each other to form a hexamer using the C-terminal region interface (CTR). Recombinant tA27 protein forms oligomers in a concentration-dependent manner in vitro in gel filtration. Analytical ultracentrifugation and multi-angle light scattering revealed that tA27 dimerized in solution and that Leu47, Leu51, and Leu54 at the NTR and Ile68, Asn75, and Leu82 at the CTR are responsible for tA27 self-assembly in vitro. Finally, we constructed recombinant vaccinia viruses expressing full length mutant A27 protein defective in either NTR, CTR, or both interactions; the results demonstrated that wild type A27 dimer/trimer formation was impaired in NTR and CTR mutant viruses, resulting in small plaques that are defective in MV egress. Furthermore, the ability of A27 protein to form disulfide-linked protein complexes with A26 protein was partially or completely interrupted by NTR and CTR mutations, resulting in mature virion progeny with increased plasma membrane fusion activity upon cell entry. Together, these results demonstrate that A27 protein trimer structure is critical for MV egress and membrane fusion modulation. Because A27 is a neutralizing target, structural information will aid the development of inhibitors to block A27 self-assembly or complex formation against vaccinia virus infection.

摘要

痘苗病毒包膜蛋白 A27 具有多种功能,在正痘病毒属的痘病毒科中是保守的。A27 蛋白与细胞表面的硫酸乙酰肝素结合,为 A26 蛋白包装到成熟病毒粒子中提供锚点,并对于成熟病毒(MV)从受感染细胞中的逸出是必需的。在这里,我们结晶并确定了含有 21-84 个氨基酸的 A27 的截断形式(tA27)的结构,分辨率为 2.2 Å。tA27 蛋白使用 N 端区域界面(NTR)形成一个意想不到的三聚体组装作为基本单元,其包含两个平行的α-螺旋和一个不寻常的反平行α-螺旋;以蛇形方式,两个三聚体彼此堆叠,使用 C 端区域界面(CTR)形成六聚体。重组 tA27 蛋白在体外凝胶过滤中以浓度依赖的方式形成寡聚体。分析超速离心和多角度光散射表明,tA27 在溶液中二聚化,并且 NTR 处的 Leu47、Leu51 和 Leu54 以及 CTR 处的 Ile68、Asn75 和 Leu82 负责 tA27 在体外的自组装。最后,我们构建了表达全长突变 A27 蛋白的重组痘苗病毒,该蛋白在 NTR、CTR 或两者相互作用中均有缺陷;结果表明,野生型 A27 二聚体/三聚体形成在 NTR 和 CTR 突变病毒中受损,导致 MV 逸出缺陷的小斑块。此外,A27 蛋白与 A26 蛋白形成二硫键连接的蛋白复合物的能力被 NTR 和 CTR 突变部分或完全阻断,导致成熟病毒粒子后代在细胞进入时具有增加的质膜融合活性。总之,这些结果表明 A27 蛋白三聚体结构对于 MV 逸出和膜融合调节至关重要。由于 A27 是一个中和靶标,结构信息将有助于开发抑制剂来阻断 A27 自组装或复合物形成以阻止痘苗病毒感染。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b26/3749956/a7f63bccdb50/ppat.1003563.g001.jpg

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