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病毒包裹小管的三维结构

Three-dimensional architecture of virus-packed tubule.

作者信息

Katayama Sumie, Wei Taiyun, Omura Toshihiro, Takagi Junichi, Iwasaki Kenji

机构信息

Institute for Protein Research, Laboratory of Protein Synthesis and Expression, Osaka University, 3-2 Yamada, Suita, Osaka 565-0871, Japan.

出版信息

J Electron Microsc (Tokyo). 2007 Jun;56(3):77-81. doi: 10.1093/jmicro/dfm009.

Abstract

When rice dwarf virus (RDV), a member of the Reoviridae family, infects leafhopper cells, formation of protruding tubules composed of nonstructural viral protein Pns 10 can be observed. We examined the three-dimensional (3D) structure of these tubules containing RDV particles using electron tomography. The thin section of RDV-infected leafhopper vector cells in monolayers was subjected to double-tilt tomography. The tomographic 3D map provides a more reliable estimation of the real dimensions of the structure compared with the 2D image of the thin section. Docking of particle models made from atomic coordinates of RDV into the tomogram revealed that the inner diameter of the tubule was close to the outer diameter of the RDV particle. Fourier-transform of the reconstituted tubule image from the purified Pns 10 protein in vitro revealed a helical structure of the tubule.

摘要

当呼肠孤病毒科成员水稻矮缩病毒(RDV)感染叶蝉细胞时,可以观察到由非结构病毒蛋白Pns 10组成的突出小管的形成。我们使用电子断层扫描技术研究了这些含有RDV颗粒的小管的三维(3D)结构。对单层培养的受RDV感染的叶蝉载体细胞的薄片进行了双倾斜断层扫描。与薄片的二维图像相比,断层扫描的3D图谱能更可靠地估计结构的实际尺寸。将根据RDV原子坐标构建的颗粒模型对接至断层图像中,结果显示小管的内径接近RDV颗粒的外径。对体外纯化的Pns 10蛋白重构的小管图像进行傅里叶变换,揭示了小管的螺旋结构。

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