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通过人工油体对重组尿酸酶进行经济纯化。

Economic purification of recombinant uricase by artificial oil bodies.

作者信息

Saadat Fatemeh, Macheroux Peter, Alizadeh Houshang, Razavi Seyed Hadi

机构信息

Independent Department of Biotechnology, College of Agriculture and Natural Resources, University of Tehran, Karaj, Iran.

Institute of Biochemistry, Graz University of Technology, Graz, Austria.

出版信息

Bioresour Bioprocess. 2022 Feb 6;9(1):10. doi: 10.1186/s40643-022-00501-x.

Abstract

Rasburicase is an expensive treatment used to control hyperuricemia caused by tumour lysis syndrome (TLS). In this study, a non-chromatographic method was designed based on nano-oil bodies for convenient and economical purification of the recombinant uricase. For this purpose, two chimaeras were synthesized with a different arrangement of the uricase, caleosin and intein fragments. After confirming the protein expression by measuring the uricase activity at 293 nm, purification was conducted through oil-body construction. The results were resolved on the 12% SDS-PAGE gel. Finally, the stability of the oil bodies was examined against different salts, surfactants, temperatures, and pH values. According to our results, the overexpression of uricase-caleosin chimaera under the T7 promoter in Escherichia coli led to the production of soluble protein, which was successfully purified by artificial oil bodies. The active uricase was subsequently released through the self-splicing of intein. Further investigations highlighted the importance of the free C-terminus of caleosin in constructing artificial oil bodies. Moreover, surfactants and low temperature, in contrast to salts, improved the stability of oil bodies. In conclusion, caleosins are an efficient purification tag reducing the cost of purification compared to conventional chromatography methods.

摘要

拉布立酶是一种用于控制肿瘤溶解综合征(TLS)引起的高尿酸血症的昂贵治疗方法。在本研究中,设计了一种基于纳米油体的非色谱方法,用于方便且经济地纯化重组尿酸酶。为此,合成了两种尿酸酶、caleosin和内含肽片段排列不同的嵌合体。通过在293nm处测量尿酸酶活性确认蛋白质表达后,通过构建油体进行纯化。结果在12% SDS-PAGE凝胶上进行分析。最后,检测了油体在不同盐、表面活性剂、温度和pH值条件下的稳定性。根据我们的结果,尿酸酶-caleosin嵌合体在大肠杆菌T7启动子下的过表达导致了可溶性蛋白的产生,该蛋白通过人工油体成功纯化。随后,活性尿酸酶通过内含肽的自我剪接释放出来。进一步的研究强调了caleosin的游离C末端在构建人工油体中的重要性。此外,与盐相比,表面活性剂和低温提高了油体的稳定性。总之,caleosins是一种有效的纯化标签,与传统色谱方法相比降低了纯化成本。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f4f8/10991495/5da3e9036580/40643_2022_501_Fig1_HTML.jpg

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