Catanzariti Ann-Maree, Soboleva Tatiana A, Jans David A, Board Philip G, Baker Rohan T
Molecular Genetics Group, Division of Molecular Medicine, John Curtin School of Medical Research, The Australian National University, Canberra, ACT 0200, Australia.
Protein Sci. 2004 May;13(5):1331-9. doi: 10.1110/ps.04618904.
Expression of recombinant proteins as fusions to the eukaryotic protein ubiquitin has been found to significantly increase the yield of unstable or poorly expressed proteins. The benefit of this technique is further enhanced by the availability of naturally occurring deubiquitylating enzymes, which remove ubiquitin from the fusion product. However, the versatility of the system has been constrained due to the lack of a robust, easily purified deubiquitylating enzyme. Here we report the development of an efficient expression system, utilizing the ubiquitin fusion technique, which allows convenient high yield and easy purification of authentic protein. An Escherichia coli vector (pHUE) was constructed for the expression of proteins as histidine-tagged ubiquitin fusions, and a histidine-tagged deubiquitylating enzyme to cleave these fusions was expressed and purified. The expression system was tested using several proteins varying in size and complexity. These results indicate that this procedure will be suitable for the expression and rapid purification of a broad range of proteins and peptides, and should be amenable to high-throughput applications.
将重组蛋白表达为与真核蛋白泛素的融合蛋白已被发现可显著提高不稳定或低表达蛋白的产量。天然存在的去泛素化酶可从融合产物中去除泛素,这进一步增强了该技术的优势。然而,由于缺乏一种强大、易于纯化的去泛素化酶,该系统的通用性受到了限制。在此,我们报告了一种利用泛素融合技术的高效表达系统的开发,该系统可方便地实现高产量且易于纯化出天然蛋白。构建了一种大肠杆菌载体(pHUE)用于表达作为组氨酸标签泛素融合蛋白的蛋白质,并表达和纯化了一种用于切割这些融合蛋白的组氨酸标签去泛素化酶。使用几种大小和复杂性各异的蛋白质对该表达系统进行了测试。这些结果表明,该方法适用于广泛的蛋白质和肽的表达与快速纯化,并且应该适用于高通量应用。