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The Generation of Turnip Crinkle Virus-Like Particles in Plants by the Transient Expression of Wild-Type and Modified Forms of Its Coat Protein

机译:野生型及其外壳蛋白的修饰形式的瞬时表达在植物中生成萝卜皱纹病毒样颗粒。

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摘要

Turnip crinkle virus (TCV), a member of the genus carmovirus of the Tombusviridae family, has a genome consisting of a single positive-sense RNA molecule that is encapsidated in an icosahedral particle composed of 180 copies of a single type of coat protein. We have employed the CPMV-HT transient expression system to investigate the formation of TCV-like particles following the expression of the wild-type coat protein or modified forms of it that contain either deletions and/or additions. Transient expression of the coat protein in plants results in the formation of capsid structures that morphologically resemble TCV virions (T = 3 structure) but encapsidate heterogeneous cellular RNAs, rather than the specific TCV coat protein messenger RNA. Expression of an amino-terminal deleted form of the coat protein resulted in the formation of smaller T = 1 structures that are free of RNA. The possibility of utilizing TCV as a carrier for the presentation of foreign proteins on the particle surface was also explored by fusing the sequence of GFP to the C-terminus of the coat protein. The expression of coat protein-GFP hybrids permitted the formation of VLPs but the yield of particles is diminished compared to the yield obtained with unmodified coat protein. Our results confirm the importance of the N-terminus of the coat protein for the encapsidation of RNA and show that the coat protein's exterior P domain plays a key role in particle formation.
机译:芜菁皱纹病毒(TCV)是Tombusviridae家族carmovirus的成员,其基因组由单个正向RNA分子组成,该分子被衣壳化在二十面体颗粒中,二十面体颗粒由180种单一类型外壳蛋白组成。我们已经使用CPMV-HT瞬时表达系统来研究野生型外壳蛋白或其包含缺失和/或添加的修饰形式表达后TCV样颗粒的形成。外壳蛋白在植物中的瞬时表达导致形成衣壳结构,该衣壳结构在形态上类似于TCV病毒体(T = 3结构),但包含了异质细胞RNA,而不是特定的TCV外壳蛋白信使RNA。外壳蛋白的氨基末端缺失形式的表达导致形成较小的不含RNA的T = 1结构。通过将GFP序列融合到外壳蛋白的C末端,还探索了利用TCV作为载体将外源蛋白呈现在颗粒表面的可能性。外壳蛋白-GFP杂合体的表达允许VLP的形成,但是与未修饰外壳蛋白获得的产量相比,颗粒的产量降低了。我们的结果证实了外壳蛋白N末端对于RNA衣壳化的重要性,并表明外壳蛋白的外部P结构域在颗粒形成中起关键作用。

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