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首页> 外文期刊>Journal of Microbiological Methods >Use of Strep-tag II for rapid detection and purification of Mycobacterium tuberculosis recombinant antigens secreted by Streptomyces lividans
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Use of Strep-tag II for rapid detection and purification of Mycobacterium tuberculosis recombinant antigens secreted by Streptomyces lividans

机译:Strep-tag II用于快速检测和纯化淡紫色链霉菌分泌的结核分枝杆菌重组抗原的用途

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Recent results with respect to the secretory production of bio-active Mycobacterium tuberculosis proteins in Streptomyces have stimulated the further exploitation of this host as a bacterial cell factory. However, the rapid isolation of a recombinant protein by conventional procedures can be a restrictive step. A previous attempt to isolate recombinant antigens fused to the widely used 6His-tag was found to be relatively incompatible with secretory production in the Streptomyces host. As an alternative, the eight-residue Strep-tag (R) II (WSHPQFEK), displaying intrinsic binding affinity towards streptavidin, was evaluated for the secretory production of two M. tuberculosis immunodominant antigens in Streptomyces lividans and their subsequent downstream processing. Therefore, the genes ag85A (Rv3804c, encoding the mycolyl-transferase Ag85A) and Rv2626c (encoding hypoxic response protein 1), were equipped with a 3'-Strep-tag (R) II-encoding sequence and placed under control of the Streptomyces venezuelae CBS762.70 subtilisin inhibitor (vsi) transcriptional, translational and signal sequences. Strep-tagged Ag85A and Rv2626c proteins were detected in the spent medium of recombinant S. lividans cultures at 48 h of growth, and purified using a Strep-Tactin Superflow (R) matrix. Recombinant Ag85A appeared as a 30-kDa protein of which the N-terminal amino acid sequence was identical to the expected one. Rv2626c was produced in two forms of 17 and 37 kDa respectively, both with the same predicted N-terminal sequence, suggesting that the 37-kDa product is an Rv2626c dimer. The obtained results indicate that the Strep-tagII is proteolytically stable in Streptomyces and does not interfere with the membrane translocation of Ag85A and Rv2626c. A comparison of reactivity of serum from tuberculosis patients versus healthy persons by ELISA showed that both S. lividans-derived antigens were recognized by sera of individuals infected with M. tuberculosis, indicating that they remained antigenetically active. To our knowledge, this is the first report showing the usefulness of an affinity peptide for detection and efficient downstream processing of recombinant proteins produced in Streptomyces. The present results add up strength to the significance of S. lividans as a valuable host to produce M. tuberculosis proteins with vaccine and diagnostic potential
机译:关于链霉菌中生物活性结核分枝杆菌蛋白的分泌产生的最新结果刺激了将该宿主进一步用作细菌细胞工厂。然而,通过常规方法快速分离重组蛋白可能是限制性步骤。发现先前尝试分离与广泛使用的6His-tag融合的重组抗原与链霉菌宿主的分泌产生相对不兼容。作为替代方案,评估了对链霉亲和素具有内在结合亲和力的八个残基的Strep-tag(R)II(WSHPQFEK),评估了在链霉菌青紫质中分泌的两种结核分枝杆菌免疫优势抗原及其后续下游加工过程。因此,基因ag85A(Rv3804c,编码霉菌基转移酶Ag85A)和Rv2626c(编码低氧反应蛋白1),具有3'-Strep-tag(R)II编码序列,并置于委内链霉菌的控制下CBS762.70枯草杆菌蛋白酶抑制剂(vsi)转录,翻译和信号序列。在生长的48小时内,在重组葡萄链霉菌培养物的废培养基中检测到带有Strep标签的Ag85A和Rv2626c蛋白,并使用Strep-Tactin Superflow(R)基质进行纯化。重组Ag85A以30 kDa的蛋白质形式出现,其N端氨基酸序列与预期的相同。 Rv2626c分别以17 kDa和37 kDa的两种形式产生,均具有相同的预测N端序列,表明37 kDa产物是Rv2626c二聚体。获得的结果表明,Strep-tagII在链霉菌中是蛋白水解稳定的,并且不干扰Ag85A和Rv2626c的膜易位。通过ELISA比较结核病患者和健康人血清的反应性表明,感染了结核分枝杆菌的个体的血清均能识别出青紫链霉菌来源的两种抗原,表明它们仍具有抗原活性。据我们所知,这是第一份报告,显示了亲和肽对链霉菌产生的重组蛋白的检测和高效下游加工的有用性。本研究结果进一步增强了利维链球菌作为生产具有疫苗和诊断潜力的结核分枝杆菌蛋白的有价值宿主的重要性的重要性。

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