[利用装甲RNA技术制备装载重组HEV RNA的MS2噬菌体衣壳及其特性研究]。

Ying Liu, Shen Wang, Tiezhong Zhou, Shenyang Gao
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引用次数: 0

摘要

本研究的目的是建立有效的对照,用于戊型肝炎病毒(HEV)的核酸检测。基于“装甲RNA技术”协议构建了MS2/HEV基因。该基因包括部分MS2噬菌体基因组,包括5'UTR、成熟蛋白、衣壳蛋白和复制酶的起始位点,以及来自HEV ORF2的部分保守序列。目的基因经PCR合成扩增,纯化后的目的基因产物亚克隆到pet -28b原核表达载体上,得到pET-28b-MS2/HEV重组质粒。SDS-PAGE在携带pET-28b-MS2/HEV质粒的大肠杆菌BL21(DE3)细胞中进行表达分析。采用离心超滤法纯化和浓缩负载HEV rna的重组MS2噬菌体衣壳(rHEPC)。随后用扫描电子显微镜对颗粒进行了形态鉴定。通过不同浓度的DNase I和RNase A的挑战来评估rHEPC颗粒的稳定性,并通过RT-PCR验证来评估其长期储存能力。SDS-PAGE结果表明,目的基因MS2/HEV能够在重组大肠杆菌BL21(DE3)中高效表达,RT-PCR结果表明,所设计的HEV保守基因序列成功地包装到ms2phage样或rHEPC颗粒中。稳定性评价表明,制备的rHEPC颗粒具有较强的抗DNase I和RNase A降解能力,在20℃下保存时,对包被的HEV RNA具有至少7个月的持久保护作用。本研究制备的rHEPC颗粒基本满足作为HEV常规核酸检测的质控材料的要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Preparation and Characterization of Recombinant HEV RNA-loaded MS2 Bacteriophage Capsid by Armored RNA Technology].

The purpose of this study was to develop an effective control to be applied in hepatitis E virus(HEV)nucleic acid detection.Construction of an MS2/HEV gene was performed based on an "Armored RNA technology" protocol. The gene included a partial MS2 phage genome including the 5’UTR,the maturation protein, capsid protein and initiation site of the replicase and a partially conserved sequence derived from the HEV ORF2.The target genes were synthesized and amplified by PCR, and the purified target gene products subcloned into the pET-28 b prokaryotic expression vector to obtain the pET-28b-MS2/HEV recombinant plasmid. SDS-PAGE was used for expression analysis in E. coli BL21(DE3)cells harboring the pET-28b-MS2/HEV plasmid. Centrifugal ultrafiltration was adopted for the purification and concentration of recombinant HEV RNA-loaded MS2 Bacteriophage Capsid (rHEPC). The morphological identification of the particles was subsequently performed by scanning electron microscopy. Stability of the rHEPC particles were evaluated by challenging with different concentrations of DNase I and RNase A, and also evaluated for long-term storage based on RT-PCR verification. SDS-PAGE results showed that the target MS2/HEV gene could express efficiently in recombinant E. coli BL21(DE3)and RT-PCR results revealed that the designed HEV conserved gene sequence was successfully packaged into MS2phage-like or rHEPC particles. Stability evaluation showed that the prepared rHEPC particles exhibited strong resistance to degradation by DNase I and RNase A and long-lasting protection of coated HEV RNA for at least seven months when stored at-20℃.The prepared rHEPC particles in the present study meet the basic requirements to be used as a quality control material for routine HEV nucleic acid detection.

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