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Expression of tobacco mosaic virus coat protein and assembly of pseudovirus particles in Escherichia coli.

机译:烟草花叶病毒外壳蛋白的表达和假病毒颗粒在大肠杆菌中的组装。

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摘要

The bidirectional self-assembly of tobacco mosaic virus (TMV, common or U1 strain) has been studied extensively in vitro. Foreign single-stranded RNA molecules containing the TMV origin-of-assembly sequence (OAS, 75-432 nt in length) are also packaged by TMV coat protein (CP) in vitro to form helical pseudovirus particles. To study virus assembly in vivo requires an easily manipulated model system, independent of replication in plants. The TMV assembly machinery also provides a convenient means to protect and recover chimeric gene transcripts of almost any length or sequence for a variety of applications. Native TMV CP expressed in and purified from Escherichia coli formed nonhelical, stacked aggregates after dialysis into pH 5 buffer and was inactive for in vitro assembly with TMV RNA. U1 CP derivatives in which the second amino acid was changed from Ser to Ala or Pro, nonacetylated N termini found in two natural strains of the virus, failed to remediate these anomalous properties. However, in vivo coexpression of CP and single-stranded RNAs (up to approximately 2 kb) containing the TMV OAS gave high yields of helical pseudovirus particles of the predicted length (up to 7.4 +/- 1.4 micrograms/mg of total bacterial protein). If the OAS-containing RNA was first recruited into bacterial polyribosomes, elongation of pseudovirus assembly was blocked. In vivo, E. coli expression of a full-length cDNA clone of the TMV genome (6.4 kb) resulted in high, immunodetectable levels of CP and assembly of sufficient intact genomic RNA to initiate systemic infection of susceptible tobacco plants.
机译:烟草花叶病毒(TMV,普通或U1株)的双向自组装已在体外进行了广泛研究。含有TMV装配起点序列(OAS,长度为75-432 nt)的外源单链RNA分子也被TMV外壳蛋白(CP)体外包装,形成螺旋假病毒颗粒。要在体内研究病毒装配,需要一个易于操作的模型系统,该系统独立于植物中的复制。 TMV组装机器还提供了一种方便的手段来保护和恢复几乎任何长度或序列的嵌合基因转录本,以用于各种应用。在大肠杆菌中表达并从中纯化的天然TMV CP在向pH 5缓冲液中渗析后形成非螺旋状堆积的聚集体,并且对于与TMV RNA的体外组装是无效的。 U1 CP衍生物(其中第二个氨基酸从Ser更改为Ala或Pro)(在该病毒的两个自然株中发现的非乙酰化N末端)无法修复这些异常特性。然而,包含TMV OAS的CP和单链RNA(最多约2 kb)在体内的共表达可产生预期长度的螺旋假病毒颗粒(产量最高可达7.4 +/- 1.4微克/毫克总细菌蛋白)。 。如果首先将包含OAS的RNA募集到细菌多核糖体中,则会阻止假病毒装配的延长。在体内,TMV基因组全长cDNA克隆(6.4 kb)的大肠杆菌表达导致高,可免疫检测水平的CP和足够完整的基因组RNA的组装,以引发易感烟草植物的系统感染。

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