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通过烟草花叶病毒外壳蛋白的自组装实现禽痘病毒的纳米颗粒衣壳化。

Nanoparticle encapsidation of Flock house virus by auto assembly of Tobacco mosaic virus coat protein.

作者信息

Maharaj Payal D, Mallajosyula Jyothi K, Lee Gloria, Thi Phillip, Zhou Yiyang, Kearney Christopher M, McCormick Alison A

机构信息

Department of Biological and Pharmaceutical Sciences, Touro University, Vallejo, CA 94594, USA.

Department of Biology, Biomedical Studies Program, Baylor University, Waco, TX 76706, USA.

出版信息

Int J Mol Sci. 2014 Oct 14;15(10):18540-56. doi: 10.3390/ijms151018540.

Abstract

Tobacco Mosaic virus (TMV) coat protein is well known for its ability to self-assemble into supramolecular nanoparticles, either as protein discs or as rods originating from the ~300 bp genomic RNA origin-of-assembly (OA). We have utilized TMV self-assembly characteristics to create a novel Flock House virus (FHV) RNA nanoparticle. FHV encodes a viral polymerase supporting autonomous replication of the FHV genome, which makes it an attractive candidate for viral transgene expression studies and targeted RNA delivery into host cells. However, FHV viral genome size is strictly limited by native FHV capsid. To determine if this packaging restriction could be eliminated, FHV was adapted to express enhanced green fluorescent protein (GFP), to allow for monitoring of functional FHV RNA activity. Then TMV OA was introduced in six 3' insertion sites, with only site one supporting functional FHV GFP expression. To create nanoparticles, FHV GFP-OA modified genomic RNA was mixed in vitro with TMV coat protein and monitored for encapsidation by agarose electrophoresis and electron microscopy. The production of TMV-like rod shaped nanoparticles indicated that modified FHV RNA can be encapsidated by purified TMV coat protein by self-assembly. This is the first demonstration of replication-independent packaging of the FHV genome by protein self-assembly.

摘要

烟草花叶病毒(TMV)外壳蛋白以其能够自组装成超分子纳米颗粒而闻名,这些纳米颗粒可以是蛋白质圆盘,也可以是源自约300 bp基因组RNA组装起始点(OA)的棒状结构。我们利用TMV的自组装特性创建了一种新型的 flock House病毒(FHV)RNA纳米颗粒。FHV编码一种支持FHV基因组自主复制的病毒聚合酶,这使其成为病毒转基因表达研究和将靶向RNA递送至宿主细胞的有吸引力的候选者。然而,FHV病毒基因组大小受到天然FHV衣壳的严格限制。为了确定这种包装限制是否可以消除,我们对FHV进行改造以表达增强型绿色荧光蛋白(GFP),以便监测功能性FHV RNA的活性。然后在六个3'插入位点引入TMV OA,只有位点一支持功能性FHV GFP表达。为了制备纳米颗粒,将FHV GFP-OA修饰的基因组RNA在体外与TMV外壳蛋白混合,并通过琼脂糖电泳和电子显微镜监测其衣壳化情况。TMV样棒状纳米颗粒的产生表明,修饰后的FHV RNA可以通过自组装被纯化的TMV外壳蛋白衣壳化。这是首次证明通过蛋白质自组装实现FHV基因组的非复制依赖性包装。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ac7a/4227231/04c4c52f964d/ijms-15-18540-g001.jpg

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