Khani Mohammad-Hosein, Bagheri Masoumeh, Dehghanian Ali, Zahmatkesh Azadeh, Moradi Bidhendi Soheila, Salehi Najafabadi Zahra, Banihashemi Reza
Department of Genomics and Genetic Engineering, Razi Vaccine and Serum Research Institute (RVSRI), Agricultural Research, Education and Extension Organization (AREEO), Karaj, Iran.
Department of Biology, Nourdanesh Institute of Higher Education, Meymeh, Iran.
Mol Biotechnol. 2019 Jan;61(1):12-19. doi: 10.1007/s12033-018-0135-y.
Recombinant flagellin (FliC) has shown low efficacy in purification because of inclusion bodies formation and aggregation. We hypothesized preserving TLR5 binding site of FliC and removing some amino acids could be responsible for aggregation and solubility improvement. Hence, a bioinformatics study was performed to find hotspots in aggregate formation. Protein modeling was carried out by SWISS-MODEL and I-TASSER servers and models were compared by MATRAS server and Chimera 1.11.2. Gene modification was carried out based on bioinformatics studies. Genes, (truncated modified fliC (tmFliC) and full-length fliC (flFliC)), were cloned and expressed in pET-21a vector. Protein purification was carried out using HIS-Tag method. Proliferation assay and also induction of IL-8 in HEK293 cells were performed to confirm bioactivity function of tmFliC. Bioinformatics results showed that partial deletion of C-terminus may increase solubility without unfavorable effect on TLR5 recognition. Also, model comparison showed that this protein may preserve 3D structure. In addition, GlobPlot server demonstrated that tmFliC formed its globular domains which were important in TLR5 recognition. As we expected, high purification efficacy for tmFliC compared with flFliC was also obtained in experimental studies and a proper function for tmFliC was observed. The tmFliC enhanced cell proliferation in HEK293 cells compare with control after 24 h. Also, IL-8 level was increased with stimulation by tmFliC after 24 h. In conclusion, reducing hydrophobicity in C-terminus and deleting necessary amino acids for filament formation may increase protein solubility.
重组鞭毛蛋白(FliC)由于包涵体形成和聚集,在纯化过程中显示出较低的效率。我们推测保留FliC的TLR5结合位点并去除一些氨基酸可能有助于改善聚集和溶解性。因此,进行了一项生物信息学研究以寻找聚集形成中的热点。通过SWISS-MODEL和I-TASSER服务器进行蛋白质建模,并通过MATRAS服务器和Chimera 1.11.2比较模型。基于生物信息学研究进行基因修饰。将基因(截短修饰的fliC(tmFliC)和全长fliC(flFliC))克隆并在pET-21a载体中表达。使用His标签方法进行蛋白质纯化。进行增殖测定以及HEK293细胞中IL-8的诱导,以确认tmFliC的生物活性功能。生物信息学结果表明,C末端的部分缺失可能会增加溶解度,而不会对TLR5识别产生不利影响。此外,模型比较表明该蛋白质可能保留三维结构。此外,GlobPlot服务器证明tmFliC形成了其球状结构域,这在TLR5识别中很重要。正如我们所预期的,在实验研究中也获得了与flFliC相比tmFliC的高纯化效率,并观察到tmFliC具有适当的功能。与对照相比,tmFliC在24小时后增强了HEK293细胞中的细胞增殖。此外,在24小时后用tmFliC刺激后,IL-8水平升高。总之,降低C末端的疏水性并删除形成细丝所需的氨基酸可能会增加蛋白质的溶解度。