Taylor D J, Speir J A, Reddy V, Cingolani G, Pringle F M, Ball L A, Johnson J E
Department of Chemistry and Biochemistry, University of California, San Diego, La Jolla, CA 92037, USA.
Arch Virol. 2006 Jan;151(1):155-65. doi: 10.1007/s00705-005-0637-3. Epub 2005 Oct 7.
Providence Virus (PrV) is a non-envoloped, T = 4 icosahedral beta-tetravirus that undergoes autocatalytic cleavage of its coat protein precursor after capsid assembly. This is also a well characterized function of Nudaurelia capensis omega virus (NomegaV), a member of the related omegatetraviruses, whose x-ray structure has been determined. Virus-like particle (VLP) production of PrV in a recombinant baculovirus expression system was attempted to obtain high VLP yields for comparison of structural and autocatalytic active site properties between these virus groups. This resulted in insoluble aggregates of PrV coat protein even though NomegaV VLPs have been successfully produced in the same system. Betatetraviruses may be more dependent on compartmentalization and availability of their full-length genome for proper folding and assembly. However, crystals were grown of limited quantities of authentic PrV produced in cell culture and a partial X-ray data set collected to 3.8 A resolution. The virus particle position and orientation in the unit cell was determined by space group consideration and rotation function analysis. A phasing model, based on NomegaV, was developed to initiate the structure solution of PrV.
普罗维登斯病毒(PrV)是一种无包膜的、T = 4 二十面体β-四病毒,在衣壳组装后其衣壳蛋白前体进行自催化切割。这也是相关ω-四病毒成员卡普阿无尾大蚕蛾病毒(NomegaV)的一个已充分表征的功能,其X射线结构已被确定。尝试在重组杆状病毒表达系统中生产PrV的病毒样颗粒(VLP),以获得高产量的VLP,用于比较这些病毒组之间的结构和自催化活性位点特性。尽管NomegaV VLPs已在同一系统中成功生产,但这导致了PrV衣壳蛋白的不溶性聚集体。β-四病毒可能更依赖于其全长基因组的区室化和可用性,以进行正确的折叠和组装。然而,通过在细胞培养中产生的有限数量的正宗PrV生长出了晶体,并收集了分辨率为3.8 Å的部分X射线数据集。通过空间群考虑和旋转函数分析确定了晶胞中病毒颗粒的位置和取向。基于NomegaV开发了一个相位模型,以启动PrV的结构解析。