...
首页> 外文期刊>PLoS Pathogens >Structure of Reovirus σ1 in Complex with Its Receptor Junctional Adhesion Molecule-A
【24h】

Structure of Reovirus σ1 in Complex with Its Receptor Junctional Adhesion Molecule-A

机译:呼肠孤病毒σ1的结构及其受体连接粘附分子-A

获取原文
           

摘要

Viral attachment to specific host receptors is the first step in viral infection and serves an essential function in the selection of target cells. Mammalian reoviruses are highly useful experimental models for studies of viral pathogenesis and show promise as vectors for oncolytics and vaccines. Reoviruses engage cells by binding to carbohydrates and the immunoglobulin superfamily member, junctional adhesion molecule-A (JAM-A). JAM-A exists at the cell surface as a homodimer formed by extensive contacts between its N-terminal immunoglobulin-like domains. We report the crystal structure of reovirus attachment protein σ1 in complex with a soluble form of JAM-A. The σ1 protein disrupts the JAM-A dimer, engaging a single JAM-A molecule via virtually the same interface that is used for JAM-A homodimerization. Thus, reovirus takes advantage of the adhesive nature of an immunoglobulin-superfamily receptor by usurping the ligand-binding site of this molecule to attach to the cell surface. The dissociation constant (KD) of the interaction between σ1 and JAM-A is 1,000-fold lower than that of the homophilic interaction between JAM-A molecules, indicating that JAM-A strongly prefers σ1 as a ligand. Analysis of reovirus mutants engineered by plasmid-based reverse genetics revealed residues in σ1 required for binding to JAM-A and infectivity of cultured cells. These studies define biophysical mechanisms of reovirus cell attachment and provide a platform for manipulating reovirus tropism to enhance vector targeting.
机译:病毒附着于特定宿主受体是病毒感染的第一步,在选择靶细胞中起着至关重要的作用。哺乳动物呼肠孤病毒是用于病毒发病机理研究的高度有用的实验模型,并显示出有望作为溶瘤药物和疫苗的载体。呼肠孤病毒通过与碳水化合物和免疫球蛋白超家族成员结合黏附分子A(JAM-A)结合而与细胞结合。 JAM-A以同源二聚体形式存在于细胞表面,该同源二聚体由其N末端免疫球蛋白样结构域之间的广泛接触形成。我们报告了呼肠孤病毒附着蛋白σ1的晶体结构与JAM-A的可溶形式复杂。 σ1蛋白破坏了JAM-A二聚体,并通过与JAM-A同型二聚作用几乎相同的界面与单个JAM-A分子结合。因此,呼肠孤病毒通过篡夺该分子的配体结合位点以附着于细胞表面,从而利用了免疫球蛋白超家族受体的粘附特性。 σ1与JAM-A之间相互作用的解离常数(KD)比JAM-A分子之间同系相互作用的解离常数低1,000倍,表明JAM-A强烈偏爱σ1作为配体。通过基于质粒的逆向遗传工程改造的呼肠孤病毒突变体的分析显示,σ1残基需要结合JAM-A和培养细胞的感染性。这些研究定义了呼肠孤病毒细胞附着的生物物理机制,并提供了一个平台来操纵呼肠孤病毒的嗜性来增强载体的靶向性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号