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红三叶草坏死花叶病毒对纳米颗粒的衣壳化作用。

Encapsidation of nanoparticles by red clover necrotic mosaic virus.

作者信息

Loo LiNa, Guenther Richard H, Lommel Steven A, Franzen Stefan

机构信息

Department of Chemistry, North Carolina State University, Raleigh, North Carolina 27695, USA.

出版信息

J Am Chem Soc. 2007 Sep 12;129(36):11111-7. doi: 10.1021/ja071896b. Epub 2007 Aug 18.

Abstract

Icosahedral virus capsids demonstrate a high degree of selectivity in packaging cognate nucleic acid genome components during virion assembly. The 36 nm icosahedral plant virus Red clover necrotic mosaic virus (RCNMV) packages its two genomic ssRNAs via a specific capsid protein (CP) genomic RNA interaction. A 20-nucleotide hairpin structure within the genomic RNA-2 hybridizes with RNA-1 to form a bimolecular complex, which is the origin of assembly (OAS) in RCNMV that selectively recruits and orients CP subunits initiating virion assembly. In this Article, an oligonucleotide mimic of the OAS sequence was attached to Au, CoFe2O4, and CdSe nanoparticles ranging from 3 to 15 nm, followed by addition of RNA-1 to form a synthetic OAS to direct the virion-like assembly by RCNMV CP. Dynamic light scattering (DLS) and transmission electron microscopy (TEM) measurements were consistent with the formation of virus-like particles (VLPs) comparable in size to native RCNMV. Attempts to encapsidate nanoparticles with diameters larger than 17 nm did not result in well-formed viral capsids. These results are consistent with the presence of a 17 nm cavity in native RCNMV. Covalent linkage of the OAS to nanoparticles directs RNA-dependent encapsidation and demonstrates that foreign cargo can be packaged into RCNMV virions. The flexibility of the RCNMV CP to encapsidate different materials, as long as it is within encapsidation constraint, is a critical factor to be considered as a drug delivery and diagnostic vehicle in biomedical applications.

摘要

二十面体病毒衣壳在病毒粒子组装过程中,对同源核酸基因组成分的包装表现出高度的选择性。36纳米的二十面体植物病毒红三叶草坏死花叶病毒(RCNMV)通过特定的衣壳蛋白(CP)与基因组RNA的相互作用来包装其两条基因组单链RNA。基因组RNA - 2内的一个20核苷酸发夹结构与RNA - 1杂交形成双分子复合物,这是RCNMV中的组装起始点(OAS),它选择性地招募并定向CP亚基以启动病毒粒子组装。在本文中,将OAS序列的寡核苷酸模拟物连接到3至15纳米的金、钴铁氧体和硒化镉纳米颗粒上,然后加入RNA - 1形成合成OAS,以指导RCNMV CP进行类病毒粒子组装。动态光散射(DLS)和透射电子显微镜(TEM)测量结果与形成大小与天然RCNMV相当的类病毒粒子(VLP)一致。尝试用直径大于17纳米的纳米颗粒进行衣壳化并未产生结构良好的病毒衣壳。这些结果与天然RCNMV中存在17纳米的腔相一致。OAS与纳米颗粒的共价连接指导了RNA依赖性衣壳化,并表明外来物质可以被包装到RCNMV病毒粒子中。只要在衣壳化限制范围内,RCNMV CP对不同材料进行衣壳化的灵活性,是在生物医学应用中作为药物递送和诊断载体时需要考虑的关键因素。

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