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Overexpression and purification of U24 from human herpesvirus type-6 in E. coli : unconventional use of oxidizing environments with a maltose binding protein-hexahistine dual tag to enhance membrane protein yield

机译:从大肠杆菌中的6型人类疱疹病毒中过表达和纯化U24:具有麦芽糖结合蛋白-六组氨酸双重标签的氧化环境的非常规用途,以提高膜蛋白的产量

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Background Obtaining membrane proteins in sufficient quantity for biophysical study and biotechnological applications has been a difficult task. Use of the maltose binding protein/hexahistidine dual tag system with E.coli as an expression host is emerging as a high throughput method to enhance membrane protein yield, solubility, and purity, but fails to be effective for certain proteins. Optimizing the variables in this system to fine-tune for efficiency can ultimately be a daunting task. To identify factors critical to success in this expression system, we have selected to study U24, a novel membrane protein from Human Herpesvirus type-6 with potent immunosuppressive ability and a possible role in the pathogenesis of the disease multiple sclerosis. Results We expressed full-length U24 as a C-terminal fusion to a maltose binding protein/hexahistidine tag and examined the effects of temperature, growth medium type, cell strain type, oxidizing vs. reducing conditions and periplasmic vs. cytoplasmic expression location. Temperature appeared to have the greatest effect on yield; at 37°C full-length protein was either poorly expressed (periplasm) or degraded (cytoplasm) whereas at 18°C, expression was improved especially in the periplasm of C41(DE3) cells and in the cytoplasm of oxidizing Δtrx/Δgor mutant strains, Origami 2 and SHuffle. Expression of the fusion protein in these strains were estimated to be 3.2, 5.3 and 4.3 times greater, respectively, compared to commonly-used BL21(DE3) cells. We found that U24 is isolated with an intramolecular disulfide bond under these conditions, and we probed whether this disulfide bond was critical to high yield expression of full-length protein. Expression analysis of a C21SC37S cysteine-free mutant U24 demonstrated that this disulfide was not critical for full-length protein expression, but it is more likely that strained metabolic conditions favour factors which promote protein expression. This hypothesis is supported by the fact that use of minimal media could enhance protein production compared to nutrient-rich LB media. Conclusions We have found optimal conditions for heterologous expression of U24 from Human Herpesvirus type-6 in E.coli and have demonstrated that milligram quantities of pure protein can be obtained. Strained metabolic conditions such as low temperature, minimal media and an oxidizing environment appeared essential for high-level, full-length protein production and this information may be useful for expressing other membrane proteins of interest.
机译:背景技术为生物物理研究和生物技术应用获得足够数量的膜蛋白一直是一项艰巨的任务。以大肠杆菌作为表达宿主的麦芽糖结合蛋白/六组氨酸双标签系统的使用正在成为一种高通量方法,以提高膜蛋白的产量,溶解度和纯度,但对某些蛋白无效。优化此系统中的变量以进行效率微调最终可能是艰巨的任务。为了确定对该表达系统成功至关重要的因素,我们选择研究U24,这是一种来自6型人疱疹病毒的新型膜蛋白,具有强大的免疫抑制能力,并可能在疾病多发性硬化的发病机理中发挥作用。结果我们将全长U24表达为与麦芽糖结合蛋白/六组氨酸标签的C末端融合体,并检查了温度,生长培养基类型,细胞株类型,氧化与还原条件以及周质与细胞质表达位置的影响。温度似乎对产量有最大的影响。在37°C时全长蛋白表达不佳(周质)或降解(细胞质),而在18°C时,表达特别是在C41(DE3)细胞的周质和氧化Δtrx/Δgor突变株的细胞质中得到改善,折纸2和随机播放。与常用的BL21(DE3)细胞相比,这些菌株中融合蛋白的表达分别估计高3.2倍,5.3倍和4.3倍。我们发现在这些条件下用分子内二硫键分离出U24,并且我们研究了该二硫键对于全长蛋白质的高产量表达是否至关重要。 C21SC37S无半胱氨酸突变体U24的表达分析表明,这种二硫键对于全长蛋白质表达不是至关重要的,但紧张的代谢条件更可能促进蛋白质表达的因子。与使用营养丰富的LB培养基相比,使用最少的培养基可以提高蛋白质产量,从而支持了这一假设。结论我们找到了在人类大肠杆菌中从6型人类疱疹病毒中U24异源表达的最佳条件,并证明可以获得毫克量的纯蛋白。紧张的代谢条件(例如低温,最少的培养基和氧化环境)似乎对于高水平,全长蛋白质的生产至关重要,并且该信息对于表达其他感兴趣的膜蛋白可能有用。

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