使用密码子优化的合成基因成功表达和纯化DPPD。

免疫学期刊(英文) Pub Date : 2011-06-01 Epub Date: 2011-06-30 DOI:10.4236/oji.2011.11001
Suely S Kashino, Antonio Campos-Neto
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引用次数: 2

摘要

DPPD (Rv0061)是结核分枝杆菌中一种难以表达的蛋白,在人感染结核分枝杆菌时可引起强烈的特异性延迟型超敏反应。因此,DPPD是一种能够提高结核菌素皮试特异性的分子,被广泛应用于结核病的诊断。然而,我们最初研究的一个缺陷是,用于进行皮肤试验的DPPD分子被设计为与另一种分枝杆菌蛋白融合的分子。之所以采用这种方法,是因为使用各种商业上可用的表达系统,DPPD既不能作为单分子表达,也不能作为融合蛋白表达。在这里,我们报道了利用含有大肠杆菌密码子偏倚的合成基因来生产和纯化rDPPD。将该基因克隆到pET14b表达载体中,随后利用pET14b表达载体转化Rosetta 2(DE3) pLysS或bll -21(DE3)pLysS宿主细胞。重组蛋白经IPTG诱导后过表达,在5 ~ 10mg /l的细菌肉汤培养中很容易纯化。经质谱测序分析证实,纯化蛋白为DPPD。此外,纯化的rDPPD刺激PPD阳性献血者的外周血单个核细胞产生高水平的IFN-γ,从而证实该分子具有生物活性。由于DPPD基因仅限于结核分枝杆菌属的结核复杂生物体,因此这种高度纯化的分子应该可用于结核杆菌致敏个体的鉴定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Successful expression and purification of DPPD using a codon optimized synthetic gene.

DPPD (Rv0061) is a difficult to express protein of Mycobacterium tuberculosis that elicits strong and specific delayed type hypersensitivity reactions in humans infected with M. tuberculosis. Therefore e DPPD is a molecule that can improve the specificity of the tuberculin skin test, which is widely used as an aid for the diagnosis of tuberculosis. However, a pitfall of our initial studies was that the DPPD molecule used to perform the skin tests was engineered as fusion molecule with another Mycobacterium protein. This approach was used because no expression of DPPD could be achieved either as a single molecule or as a fusion protein using a variety of commercially available expression systems. Here, we report the production and purification of rDPPD using a synthetic gene engineered to contain E. coli codon bias. The gene was cloned into pET14b expression vector, which was subsequently used to transform Rosetta 2(DE3) pLysS or BL-21(DE3)pLysS host cells. The recombinant protein was over-expressed after induction with IPTG and its purification was easily achieved at levels of 5 - 10 mg/l of bacterial broth cultures. The purified protein was confirmed to be DPPD by Mass Spectroscopy sequencing analysis. Moreover, purified rDPPD stimulated peripheral blood mononuclear cells of PPD positive blood donors to produce high levels of IFN-γ, thus confirming that this molecule is biologically active. Because of the DPPD gene is restricted to the tuberculosis-complex organisms of Mycobacterium genus, this highly purified molecule should be useful for the identification of individuals sensitized with tubercle bacilli.

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