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酸浆斑驳病毒空衣壳的结构研究

Structural studies on the empty capsids of Physalis mottle virus.

作者信息

Krishna S S, Sastri M, Savithri H S, Murthy M R

机构信息

Molecular Biophysics Unit, Indian Institute of Science, Bangalore, 560 012, India.

出版信息

J Mol Biol. 2001 Apr 6;307(4):1035-47. doi: 10.1006/jmbi.2001.4533.

Abstract

The three-dimensional crystal structure of the empty capsid of Physalis mottle tymovirus has been determined to 3.2 A resolution. The empty capsids crystallized in the space group P1, leading to 60-fold non-crystallographic redundancy. The known structure of Physalis mottle virus was used as a phasing model to initiate the structure determination by real-space electron-density averaging. The main differences between the structures of the native and the empty capsids were in residues 10 to 28 of the A-subunit, residues 1 to 9 of the B-subunit and residues 1 to 5 of the C-subunit, which are ordered only in the native virus particles. An analysis of the subunit disposition reveals that the virus has expanded radially outward by approximately 1.8 A in the empty particles. The A-subunits move in a direction that makes 10 degrees to the icosahedral 5-fold axes of symmetry. The B and C-subunits move along vectors making 12 degrees and 15 degrees to the quasi 6-fold axes. The quaternary organization of the pentameric and hexameric capsomeres are not altered significantly. However, the pentamer-hexamer contacts are reduced. Therefore, encapsidation of RNA appears to cause a reduction in the particle radius concomittant with the ordering of the N-terminal arm in the three subunits. These structural changes in Physalis mottle virus appear to be larger than the corresponding changes observed in viruses for which both the empty and full particle structures have been determined.

摘要

酸浆斑驳芜菁花叶病毒空衣壳的三维晶体结构已确定至3.2埃分辨率。空衣壳在空间群P1中结晶,导致60倍的非晶体学冗余。酸浆斑驳病毒的已知结构被用作相位模型,通过实空间电子密度平均法启动结构测定。天然衣壳和空衣壳结构的主要差异在于A亚基的第10至28位残基、B亚基的第1至9位残基和C亚基的第1至5位残基,这些残基仅在天然病毒颗粒中有序排列。对亚基排列的分析表明,在空颗粒中病毒已沿径向向外扩展约1.8埃。A亚基沿与二十面体5重对称轴成10度角的方向移动。B和C亚基沿与准6重轴成12度和15度角的向量移动。五聚体和六聚体壳粒的四级结构没有明显改变。然而,五聚体-六聚体接触减少。因此,RNA的包装似乎导致颗粒半径减小,同时三个亚基中N端臂有序排列。酸浆斑驳病毒中的这些结构变化似乎比在已确定空颗粒和完整颗粒结构的病毒中观察到的相应变化更大。

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