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BST-2/ tetherin 胞外结构域的结构和生物物理分析揭示了一种进化上保守的设计,以抑制病毒释放。

Structural and biophysical analysis of BST-2/tetherin ectodomains reveals an evolutionary conserved design to inhibit virus release.

机构信息

Department of Pathology and Immunology, Washington University School of Medicine, St. Louis, Missouri 63110, USA.

出版信息

J Biol Chem. 2011 Jan 28;286(4):2987-97. doi: 10.1074/jbc.M110.190538. Epub 2010 Nov 17.

Abstract

BST-2/tetherin is a host antiviral molecule that functions to potently inhibit the release of enveloped viruses from infected cells. In return, viruses have evolved antagonists to this activity. BST-2 traps budding virions by using two separate membrane-anchoring regions that simultaneously incorporate into the host and viral membranes. Here, we detailed the structural and biophysical properties of the full-length BST-2 ectodomain, which spans the two membrane anchors. The 1.6-Å crystal structure of the complete mouse BST-2 ectodomain reveals an ∼145-Å parallel dimer in an extended α-helix conformation that predominantly forms a coiled coil bridged by three intermolecular disulfides that are required for stability. Sequence analysis in the context of the structure revealed an evolutionarily conserved design that destabilizes the coiled coil, resulting in a labile superstructure, as evidenced by solution x-ray scattering displaying bent conformations spanning 150 and 180 Å for the mouse and human BST-2 ectodomains, respectively. Additionally, crystal packing analysis revealed possible curvature-sensing tetrameric structures that may aid in proper placement of BST-2 during the genesis of viral progeny. Overall, this extended coiled-coil structure with inherent plasticity is undoubtedly necessary to accommodate the dynamics of viral budding while ensuring separation of the anchors.

摘要

BST-2/ tetherin 是一种宿主抗病毒分子,能够有效抑制受感染细胞中包膜病毒的释放。作为回报,病毒进化出了针对这种活性的拮抗剂。BST-2 通过使用两个独立的膜锚定区域来捕获出芽的病毒粒子,这两个区域同时整合到宿主和病毒膜中。在这里,我们详细介绍了全长 BST-2 胞外域的结构和生物物理特性,该胞外域跨越两个膜锚定区域。完整的小鼠 BST-2 胞外域的 1.6Å 晶体结构揭示了一种约 145Å 的平行二聚体,呈伸展的α-螺旋构象,主要形成由三个分子内二硫键桥接的卷曲螺旋,这对于稳定性是必需的。结构背景下的序列分析揭示了一种进化上保守的设计,该设计使卷曲螺旋不稳定,导致不稳定的超结构,这可以通过溶液 X 射线散射显示出分别为 150Å 和 180Å 的小鼠和人 BST-2 胞外域的弯曲构象来证明。此外,晶体包装分析揭示了可能的曲率感应四聚体结构,这可能有助于在病毒子代生成过程中正确放置 BST-2。总的来说,这种具有固有可塑性的伸展卷曲螺旋结构无疑对于适应病毒出芽的动力学同时确保锚定的分离是必要的。

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