Kwon Soo-Young, Choi Yoon-Joo, Kang Tae-Hong, Lee Kwang-Hoon, Cha Sun-Shin, Kim Gyung-Hwa, Lee Heung-Soo, Kim Kyong-Tai, Kim Kyung-Jin
X-ray Research Group, Pohang Accelerator Laboratory, Pohang, Kyungbuk 790-784, Republic of Korea.
Plasmid. 2005 May;53(3):274-82. doi: 10.1016/j.plasmid.2004.11.006. Epub 2005 Jan 20.
Recently developed bacterial hemoglobin (VHb) fusion expression vector has been widely used for the production of many target proteins due to its distinctive properties of expressing fusion protein with red color which facilitates visualization of the steps in purification, and increasing solubility of the target proteins. However, after intensive use of the vector, several defects have been found. In this report, we present a modified VHb fusion vector (pPosKJ) with higher efficiency, in which most of the defects were eliminated. First, it was found that thrombin protease often digests target protein as well as inserted thrombin cleavage site, so it was replaced by a TEV cleavage site for more specific cleavage of VHb from target protein. Second, a glycine-rich linker sequence was inserted between 6x his-tag and VHb to improve the affinity of 6x his-tag to Ni-NTA resin, resulting in higher purity of eluted fusion protein. Third, EcoRI and XhoI restriction sites located elsewhere in the vector were removed to make these restriction sites available for the cloning of target protein coding genes. A pPosKJ vector was fully examined with an anti-apoptotic BCL-2 family member of Caenorhabditis elegans, CED-9. A C-terminal VHb fusion expression vector (pPosKJC) was also constructed for stable expression of target proteins that may be difficult to express with an N-terminal fusion. Vaccinia-related kinase 1 (VRK1) was also successfully expressed and purified using the vector with high yield. Taken together, we suggest that the VHb fusion vector may be well suited for high-throughput protein expression and purification.
最近开发的细菌血红蛋白(VHb)融合表达载体因其具有独特的性质而被广泛用于多种目标蛋白的生产,这些性质包括表达带有红色的融合蛋白,这便于观察纯化步骤,以及提高目标蛋白的溶解度。然而,在该载体被大量使用后,发现了一些缺陷。在本报告中,我们展示了一种效率更高的改良VHb融合载体(pPosKJ),其中大部分缺陷已被消除。首先,发现凝血酶蛋白酶经常会消化目标蛋白以及插入的凝血酶切割位点,因此将其替换为TEV切割位点,以便更特异性地从目标蛋白上切割VHb。其次,在6x组氨酸标签和VHb之间插入了一个富含甘氨酸的接头序列,以提高6x组氨酸标签与镍-氮三乙酸树脂的亲和力,从而提高洗脱融合蛋白的纯度。第三,去除了载体中其他位置的EcoRI和XhoI限制性酶切位点,使这些限制性酶切位点可用于克隆目标蛋白编码基因。用秀丽隐杆线虫的抗凋亡BCL-2家族成员CED-9对pPosKJ载体进行了全面检测。还构建了一个C端VHb融合表达载体(pPosKJC),用于稳定表达可能难以通过N端融合表达的目标蛋白。痘苗相关激酶1(VRK1)也使用该载体成功地高产量表达和纯化。综上所述,我们认为VHb融合载体可能非常适合高通量蛋白表达和纯化。