Weis Roland, Luiten Ruud, Skranc Wolfgang, Schwab Helmut, Wubbolts Marcel, Glieder Anton
Institute of Molecular Biotechnology and Research Centre Applied Biocatalysis, Petersgasse 14, A-8010 Graz, Austria.
FEMS Yeast Res. 2004 Nov;5(2):179-89. doi: 10.1016/j.femsyr.2004.06.016.
Comparative screening of gene expression libraries employing the potent industrial host Pichia pastoris for improving recombinant eukaryotic enzymes by protein engineering was an unsolved task. We simplified the protocol for protein expression by P. pastoris and scaled it down to 0.5-ml cultures. Optimising standard growth conditions and procedures, programmed cell death and necrosis of P. pastoris in microscale cultures were diminished. Uniform cell growth in 96-deep-well plates now allows for high-throughput protein expression and screening for improved enzyme variants. Furthermore, the change from one host for protein engineering to another host for enzyme production becomes dispensable, and this accelerates the protein breeding cycles and makes predictions for large-scale production more accurate.
利用强效工业宿主毕赤酵母对基因表达文库进行比较筛选,通过蛋白质工程改进重组真核酶,这是一项尚未解决的任务。我们简化了毕赤酵母蛋白质表达方案,并将其缩小至0.5毫升培养物规模。优化标准生长条件和程序后,微尺度培养中毕赤酵母的程序性细胞死亡和坏死现象减少。现在,96孔深孔板中细胞生长均匀,可实现高通量蛋白质表达,并筛选改良的酶变体。此外,从用于蛋白质工程的一种宿主转换为用于酶生产的另一种宿主变得不再必要,这加快了蛋白质育种周期,并使大规模生产预测更加准确。