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Structural Model of the Tubular Assembly of the Rous Sarcoma Virus Capsid Protein

机译:劳斯肉瘤病毒衣壳蛋白管状组装的结构模型

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摘要

The orthoretroviral capsid protein (CA) assembles into polymorphic capsids, whose architecture, assembly, and stability are still being investigated. The N-terminal and C-terminal domains of CA (NTD and CTD, respectively) engage in both homotypic and heterotypic interactions to create the capsid. Hexameric turrets formed by the NTD decorate the majority of the capsid surface. We report nearly complete solid-state NMR (ssNMR) resonance assignments of Rous sarcoma virus (RSV) CA, assembled into hexamer tubes that mimic the authentic capsid. The ssNMR assignments show that, upon assembly, large conformational changes occur in loops connecting helices, as well as the short 3_10 helix initiating the CTD. The interdomain linker becomes statically disordered. Combining constraints from ssNMR and cryo-electron microscopy (cryo-EM), we establish an atomic resolution model of the RSV CA tubular assembly using molecular dynamics flexible fitting (MDFF) simulations. On the basis of comparison of this MDFF model with an earlier-derived crystallographic model for the planar assembly, the induction of curvature into the RSV CA hexamer lattice arises predominantly from reconfiguration of the NTD—CTD and CTD trimer interfaces. The CTD dimer and CTD trimer interfaces are also intrinsically variable. Hence, deformation of the CA hexamer lattice results from the variable displacement of the CTDs that surround each hexameric turret. Pervasive H-bonding is found at all interdomain interfaces, which may contribute to their malleability. Finally, we find helices at the interfaces of HIV and RSV CA assemblies have very different contact angles, which may reflect differences in the capsid assembly pathway for these viruses.
机译:逆转录病毒衣壳蛋白(CA)组装成多态衣壳,其结构,组装和稳定性仍在研究中。 CA的N末端和C末端结构域(分别为NTD和CTD)参与同型和异型相互作用以产生衣壳。 NTD形成的六边形炮塔装饰了大部分衣壳表面。我们报告了组装到模拟真实衣壳的六聚体管中的劳斯肉瘤病毒(RSV)CA的几乎完整的固态NMR(ssNMR)共振分配。 ssNMR分配表明,组装后,大的构象变化发生在连接螺旋的环中,以及引发CTD的短3_10螺旋中。域间链接器变得静态混乱。结合ssNMR和低温电子显微镜(cryo-EM)的约束条件,我们使用分子动力学柔性拟合(MDFF)模拟建立了RSV CA管状组件的原子分辨率模型。根据此MDFF模型与较早推导的平面组装晶体学模型的比较,RSV CA六聚体晶格的曲率感应主要来自NTD-CTD和CTD三聚体界面的重新配置。 CTD二聚体和CTD三聚体接口也是固有可变的。因此,CA六聚体晶格的变形是由围绕每个六聚体转塔的CTD的可变位移引起的。在所有域间接口处都发现了普遍的H键,这可能有助于其延展性。最后,我们发现HIV和RSV CA装配体的界面处的螺旋具有非常不同的接触角,这可能反映了这些病毒的衣壳装配途径中的差异。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2017年第5期|2006-2013|共8页
  • 作者单位

    Department of Physics, University of Central Florida, Orlando, Florida 32816, United States,Laboratory of Chemical Physics, NIDDK, NIH, Maryland, MD;

    Department of Physics, University of Central Florida, Orlando, Florida 32816, United States;

    National High Magnetic Field Laboratory, Florida State University, Tallahassee, Florida 32310, United States;

    School of Biological Sciences, University of Auckland, Private Bag 92019, Auckland 1142, New Zealand;

    School of Biological Sciences, University of Auckland, Private Bag 92019, Auckland 1142, New Zealand;

    Department of Physics, University of Central Florida, Orlando, Florida 32816, United States;

    National High Magnetic Field Laboratory, Florida State University, Tallahassee, Florida 32310, United States;

    Department of Microbiology and Immunology, Penn State University College of Medicine, Hershey, Pennsylvania 17033, United States;

    School of Biological Sciences, University of Auckland, Private Bag 92019, Auckland 1142, New Zealand;

    National High Magnetic Field Laboratory, Florida State University, Tallahassee, Florida 32310, United States;

    Department of Physics, Indiana University—Purdue University Indianapolis, Indianapolis, Indiana 46202, United States;

    Department of Physics, University of Central Florida, Orlando, Florida 32816, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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  • 入库时间 2022-08-18 03:07:55

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