Taskinen Barbara, Airenne Tomi T, Jänis Janne, Rahikainen Rolle, Johnson Mark S, Kulomaa Markku S, Hytönen Vesa P
BioMediTech, University of Tampere, Tampere, Finland; Fimlab Laboratories, Pirkanmaa Hospital District, Tampere, Finland.
Department of Biosciences, Åbo Akademi University, Turku, Finland.
PLoS One. 2014 Mar 14;9(3):e92058. doi: 10.1371/journal.pone.0092058. eCollection 2014.
Avidins are a family of proteins widely employed in biotechnology. We have previously shown that functional chimeric mutant proteins can be created from avidin and avidin-related protein 2 using a methodology combining random mutagenesis by recombination and selection by a tailored biopanning protocol (phage display). Here, we report the crystal structure of one of the previously selected and characterized chimeric avidin forms, A/A2-1. The structure was solved at 1.8 Å resolution and revealed that the protein fold was not affected by the shuffled sequences. The structure also supports the previously observed physicochemical properties of the mutant. Furthermore, we improved the selection and screening methodology to select for chimeric avidins with slower dissociation rate from biotin than were selected earlier. This resulted in the chimeric mutant A/A2-B, which showed increased thermal stability as compared to A/A2-1 and the parental proteins. The increased stability was especially evident at conditions of extreme pH as characterized using differential scanning calorimetry. In addition, amino acid sequence and structural comparison of the chimeric mutants and the parental proteins led to the rational design of A/A2-B I109K. This mutation further decreased the dissociation rate from biotin and yielded an increase in the thermal stability.
抗生物素蛋白是一类在生物技术中广泛应用的蛋白质。我们之前已经表明,通过结合重组随机诱变和定制的生物淘选方案(噬菌体展示)的方法,可以从抗生物素蛋白和抗生物素蛋白相关蛋白2中创建功能性嵌合突变蛋白。在此,我们报告了之前选择并表征的一种嵌合抗生物素蛋白形式A/A2-1的晶体结构。该结构以1.8 Å的分辨率解析,结果表明蛋白质折叠不受重排序列的影响。该结构还支持了之前观察到的突变体的物理化学性质。此外,我们改进了选择和筛选方法,以筛选出与生物素解离速率比早期选择的嵌合抗生物素蛋白更慢的嵌合抗生物素蛋白。这产生了嵌合突变体A/A2-B,与A/A2-1和亲本蛋白相比,其热稳定性有所提高。使用差示扫描量热法表征发现,在极端pH条件下,稳定性的提高尤为明显。此外,嵌合突变体和亲本蛋白的氨基酸序列和结构比较导致了A/A2-B I109K的合理设计。这种突变进一步降低了与生物素的解离速率,并提高了热稳定性。