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Expression and purification of a trivalent pertussis toxin diphtheria toxin tetanus toxin fusion protein in Escherichia coli

机译:三价百日咳毒素白喉毒素破伤风毒素融合蛋白在大肠杆菌中的表达与纯化

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Pertussis toxoid, diphtheria toxoid, and tetanus toxoid are key components of diphtheria-tetanus-acellular pertussis vaccines. The efficacy of the vaccines is well documented, however, the vaccines are expensive partly because the antigens are derived from three different bacteria. In this study, a fusion protein (PDT) composed of the immunoprotective S1 fragment of pertussis toxin, the full-length nontoxic diphtheria toxin, and fragment C of tetanus toxin was constructed via genetic means. The correct fusion was verified by restriction endonuclease analysis and Western immunoblotting. Escherichia coli carrying the recombinant plasmid (pCoPDT) produced a 161 kDa protein that was recognized by antibodies specific to the three toxins. The expression of the PDT protein was inducible by isopropyl-beta-D-thio-galactoside but the total amount of protein produced was relatively low. Attempts to improve the protein yield by expression in an E. coli strain (Rosetta-gami 2) that could alleviate rare-codon usage bias and by supplementation of the growth media with amino acids deemed to be a limiting factor in translation were not successful. The PDT protein remained in the insoluble fraction when the recombinant E. coli was grown at 37 degrees C but the protein became soluble when the bacteria were grown at 22 degrees C. The PDT protein was isolated via affinity chromatography on a NiCAM column. The protein was associated with five other proteins via disulfide bonds and non-covalent interactions. Following treatment with beta-mercaptoethanol, the PDT fusion was purified to homogeneity by preparative polyacrylamide gel electrophoresis with a yield of 45 mu g/L of culture. Antisera generated against the purified PDT protein recognized the native toxins indicating that some, if not all, of the native epitopes were conserved. (c) 2006 Elsevier Inc. All rights reserved.
机译:百日咳类毒素,白喉类毒素和破伤风类毒素是白喉-破伤风-无细胞百日咳疫苗的关键成分。疫苗的功效已被充分证明,但是,疫苗价格昂贵,部分原因是抗原源自三种不同的细菌。在这项研究中,通过遗传手段构建了由百日咳毒素的免疫保护性S1片段,全长无毒白喉毒素和破伤风毒素的片段C组成的融合蛋白(PDT)。通过限制性核酸内切酶分析和Western免疫印迹验证了正确的融合。带有重组质粒(pCoPDT)的大肠杆菌产生了一个161 kDa的蛋白质,该蛋白质被三种毒素特异的抗体所识别。异丙基-β-D-硫代半乳糖苷可诱导PDT蛋白的表达,但产生的蛋白总量相对较低。通过在大肠杆菌菌株(Rosetta-gami 2)中表达可以减轻稀有密码子使用偏倚以及通过在生长培养基中补充被认为是翻译限制因子的氨基酸来提高蛋白质产量的尝试均未成功。当重组大肠杆菌在37°C下生长时,PDT蛋白保留在不溶级分中,而当细菌在22°C下生长时,PDT蛋白变得可溶。PDT蛋白通过NiCAM柱上的亲和色谱分离。该蛋白质通过二硫键和非共价相互作用与其他五个蛋白质结合。用β-巯基乙醇处理后,PDT融合物通过制备型聚丙烯酰胺凝胶电泳纯化至均质,培养量为45μg / L。针对纯化的PDT蛋白产生的抗血清识别了天然毒素,这表明某些(如果不是全部)天然表位是保守的。 (c)2006 Elsevier Inc.保留所有权利。

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