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Cloning, expression, identification and bioinformatics analysis of Rv3265c gene fromMycobacterium tuberculosis inEscherichia coli

机译:大肠杆菌结核分枝杆菌Rv3265c基因的克隆,表达,鉴定及生物信息学分析

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Objective:To clone and express Rv3265c gene ofMycobacterium tuberculosis inEscherichia coli (E. coli)under optimistic conditions, obtain and identify protein expressed, analyze the structure and characteristics of the protein using bioinformatics methods for future applications.Methods:Rv3265c gene fromMycobacterium tuberculosisH37Rv was amplified by polymerase chain reaction, and was cloned into the pET-30a vector after purification and recovery. The recombinant plasmid was sequenced and expressed inE. coliBL21(DE3), and then purified and identified by western blotting. The essential physical-chemical properties of the protein were predicated by bioinformatics tools, including subcellular location, secondary structure, domains, antigenic epitopes,etc. Tertiary structure of the protein based on homology modeling was established, while multi-sequence homological alignment and phylogenetic analysis were proformed.Results: The recombinant protein was obtained in soluble fraction from expression system inE.coliBL21(DE3) carrying pET30- Rv3265c plasmid, and Rv3265c gene was expressed correctly. Bioinformatics analysis showed the protein contained no signal peptide and transmembrane helices, located outside of membrane. Secondary structure analysis revealed it contained α-helix, extended strand and random coil,46.8%, 14.6%, 38.6%, respectively. Furthermore, it possessed six potential antigenic epitopes, one glycosyl transferase domain. A simple three-dimensional model of this protein was constructed by Swiss-model sever. Both sequences and structures were conservative and especial either in gene or in protein.Conclusions: Rv3265c gene might be a desirable molecular target for anti-tuberculosis drug and vaccine. The purified protein from expression will be utilized to study the kinetics of L-rhamnosyltransferase and to develope an enzyme assay for screening vaccine or drug.
机译:目的:在乐观条件下克隆表达结核分枝杆菌Rv3265c基因,获得并鉴定表达的蛋白质,并利用生物信息学方法分析该蛋白质的结构和特征,以备将来应用。方法:扩增结核分枝杆菌H37Rv的Rv3265c基因通过聚合酶链反应,纯化和回收后克隆到pET-30a载体中。重组质粒被测序并在E中表达。 coliBL21(DE3),然后通过Western blot纯化和鉴定。蛋白质的基本物理化学特性由生物信息学工具预测,包括亚细胞定位,二级结构,结构域,抗原表位等。结果:从携带pET30-Rv3265c质粒的E.coliBL21(DE3)表达系统的可溶性部分中获得了重组蛋白,并通过同源建模建立了三级结构,并进行了多序列同源性比对和系统进化分析。 Rv3265c基因已正确表达。生物信息学分析表明,该蛋白质不含信号肽和跨膜螺旋,位于膜的外部。二级结构分析表明它含有α-螺旋,延伸链和无规卷曲,分别为46.8%,14.6%,38.6%。此外,它具有六个潜在的抗原表位,一个糖基转移酶结构域。这种蛋白质的简单三维模型是由瑞士模型服务器构建的。结论:Rv3265c基因可能是抗结核药物和疫苗的理想分子靶标。从表达中纯化的蛋白质将用于研究L-鼠李糖基转移酶的动力学,并开发用于筛选疫苗或药物的酶法。

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  • 来源
    《亚太热带医药杂志(英文版)》 |2011年第004期|266-270|共5页
  • 作者单位

    Agriculture School of Hainan University, Haikou 570228, P. R. China;

    Agriculture School of Hainan University, Haikou 570228, P. R. China;

    The School of Troptical and Laboratory Medicine, Hainan Medical University, Haikou 571101, P. R. China;

    Affiliated Hospital of Hainan Medical University, Haikou 571101, P. R. China;

    The School of Troptical and Laboratory Medicine, Hainan Medical University, Haikou 571101, P. R. China;

    The School of Troptical and Laboratory Medicine, Hainan Medical University, Haikou 571101, P. R. China;

    The School of Troptical and Laboratory Medicine, Hainan Medical University, Haikou 571101, P. R. China;

    The School of Troptical and Laboratory Medicine, Hainan Medical University, Haikou 571101, P. R. China;

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