| Literature DB >> 32266507 |
Xiao-Feng Zhou1, Chen-Lu Zhang1, Xue-Ping Gao1, Wei-Long Wang1, Zheng-Fen He1, Feng-Ying Jiang2, Yi-Lin Pang1, Jiang-Hui Li1, Xiao-Jun Ren1, Huai-Bin Zhou1, Guo-Qiang Tan3, Jian-Xin Lyu4, Wu Wang5.
Abstract
The development of novel methods for highly efficient protein purification remains a research focus in the biotechnology field because conventional purification approaches, including affinity purification, gel filtration, and ion-exchange chromatography, require complex manipulation steps and are costly. Here, we describe a simple and rapid protein purification strategy in which the SUMO tag and Ulp1 protease are surface-displayed separately on Escherichia coli cells. After protein induction, the cells are harvested, resuspended in cleavage buffer, and incubated together for cleavage. In this approach, the surface-displayed Ulp1 cleaves the membrane-anchored SUMO fusion protein, resulting in the release of the target protein from the C-terminal of SUMO into the solution. The bacterial cells harboring SUMO and Ulp1 on their surfaces can be easily removed by centrifugation. To evaluate the purification method, we used red fluorescent protein (mCherry). Purified mCherry protein (7.72 ± 1.05 mg from 1 L of bacterial culture) was obtained after only 30 min of incubation. The protein purity was higher than 80%, and could be further improved (> 90%) by simple ultrafiltration. This study offers a promising and simple strategy for the purification of recombinant protein in its native form that requires only cleavage and centrifugation steps.Entities:
Keywords: Protein purification; SUMO fusion; Surface display; Ulp1
Year: 2020 PMID: 32266507 PMCID: PMC7138890 DOI: 10.1186/s13568-020-00999-4
Source DB: PubMed Journal: AMB Express ISSN: 2191-0855 Impact factor: 3.298
Fig. 1Illustration of the protein purification strategy based on cell-surface display of SUMO-fused recombinant protein and Ulp1 protease
Fig. 2Schematic illustration of the vectors constructed for the expression of surface-displayed SUMO-fused recombinant protein (a) and Ulp1 protease (b). The coding sequence of the target protein can be inserted into the universal expression vector (a) at the NdeI restriction site
Fig. 3a SDS-PAGE analysis of the expression of surface-displayed SUMO-mCherry and Ulp1 induced by IPTG and the induced cells after incubation in the presence of 200 μg/mL trypsin at 37 °C for 1 h. b Protein expression in different fractions of induced cells. Equal volumes of fractionated samples were used for SDS-PAGE analyses. C: cytoplasmic fraction; I: inner membrane fraction; O: outer membrane fraction. The results are representative of three independent experiments. c Immunolabeling analysis of induced intact cells using anti-His antibody. After three washes to remove unbound secondary antibody, the cells were incubated in ECL substrate solution for 10 min to develop the chemiluminescence. The luminescence intensity was measured at 425 nm using a microplate reader. Data are means of three independent experiments, error bars represent standard deviation
Fig. 4Cleavage of surface-expressed SUMO-fused mCherry by surface-expressed Ulp1 and purification of mCherry. a SDS-PAGE analysis (left panel) and western blot (right panel) of surface-displaying bacterial cells and released target protein fractions. IPTG-induced E. coli cells (pET-LO-SUMO-mCherry/BL21 and pET-YfaL-Ulp1/BL21) were incubated together in cleavage buffer at 37 °C for 30 min, after which the cells and the buffer solution were immediately separated by centrifugation. Lane 4: cell pellets before incubation; lane 5: cell pellets after incubation; lane 6: supernatant fraction after incubation. The negative control (pET-LO-SUMO-mCherry/BL21 and pET/BL21) was prepared using the same procedures (Lane 1–3). Cleavage was conducted under different conditions of ionic strength (b), temperature (c), and incubation time (d) to optimize the cleavage efficiency and mCherry protein yield. The supernatant fraction after cleavage and centrifugation was analyzed by SDS-PAGE. e SDS-PAGE analysis of purified mCherry protein prior to (lane 1) or after (lane 2) ultrafiltration using a 30-kDa ultrafiltration tube. The results are representative of three independent experiments