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利用疏水相互作用色谱法从油体中分离大豆蛋白P34。

Isolation of soybean protein P34 from oil bodies using hydrophobic interaction chromatography.

作者信息

Sewekow Eva, Kessler Lars Christian, Seidel-Morgenstern Andreas, Rothkötter Hermann-Josef

机构信息

Institute of Anatomy, Medical Faculty, Otto-von-Guericke University Magdeburg, Leipziger Str, 44, 39120 Magdeburg, Germany.

出版信息

BMC Biotechnol. 2008 Mar 11;8:27. doi: 10.1186/1472-6750-8-27.

Abstract

BACKGROUND

Soybeans play a prominent role in allergologic research due to the high incidence of allergic reactions. For detailed studies on specific proteins it is necessary to have access to a large amount of pure substance.

RESULTS

In this contribution, a method for purifying soybean (Glycine max) protein P34 (also called Gly m Bd 30 K or Gly m 1) using hydrophobic interaction chromatography is presented. After screening experiments using 1 mL HiTrap columns, Butyl Sepharose 4 FF was selected for further systematic investigations. With this stationary phase, suitable operation conditions for two-step gradient elution using ammonium sulphate were determined experimentally. The separation conditions obtained in a small column could be scaled up successfully to column volumes of 7.5 and 75 mL, allowing for high product purities of almost 100% with a yield of 27% for the chromatographic separation step. Conditions could be simplified further using a onestep gradient, which gave comparable purification in a shorter process time. The identity of the purified protein was verified using in-gel digestion and mass spectrometry as well as immunological techniques.

CONCLUSION

With the technique presented it is possible to produce, within a short timeframe, pure P34, suitable for further studies where an example antigen is needed.

摘要

背景

由于过敏反应的高发生率,大豆在变态反应学研究中发挥着重要作用。对于特定蛋白质的详细研究,有必要获得大量的纯物质。

结果

本文介绍了一种使用疏水相互作用色谱法纯化大豆(Glycine max)蛋白P34(也称为Gly m Bd 30 K或Gly m 1)的方法。在使用1 mL HiTrap柱进行筛选实验后,选择丁基琼脂糖凝胶4 FF进行进一步的系统研究。使用该固定相,通过实验确定了使用硫酸铵进行两步梯度洗脱的合适操作条件。在小柱中获得的分离条件可以成功放大到7.5 mL和75 mL的柱体积,色谱分离步骤的产品纯度几乎达到100%,产率为27%。使用一步梯度可以进一步简化条件,在更短的处理时间内实现类似的纯化效果。使用凝胶内消化、质谱以及免疫技术验证了纯化蛋白的身份。

结论

使用本文介绍的技术,可以在短时间内生产出适合需要示例抗原的进一步研究的纯P34。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d9ea/2292165/6d947cd22a56/1472-6750-8-27-1.jpg

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