Zou W, Ueda M, Tanaka A
Laboratory of Applied Biological Chemistry, Department of Synthetic Chemistry and Biological Chemistry, Graduate School of Engineering, Kyoto University, Yoshida, Sakyo-ku, Kyoto 606-8501, Japan.
Appl Microbiol Biotechnol. 2002 May;58(6):806-12. doi: 10.1007/s00253-002-0961-4. Epub 2002 Mar 23.
A combinatorial random protein library was constructed from random DNA fragments generated by "DNA random priming", an improved method of "random-priming recombination" using random-sequence primers and template cDNA from the yeast Saccharomyces cerevisiae. In order to express this library on the yeast cell surface, a yeast multicopy cassette vector was constructed, in which the random-protein-encoding DNA fragments were fused to a gene encoding the C-terminal 320 amino acids of alpha-agglutinin. Fluorescent labeling of the immuno-reaction of RGS(His)(6) epitope confirmed the surface display of random proteins. The surface display of heterologous random proteins on yeast cells will have a wide application. As an example, an n-nonane-tolerant yeast strain that could grow very well in nonane-overlaid culture medium was screened out from transformants displaying this combinatorial library. n-Nonane tolerance was dependent on the transformed plasmid, and the related protein was confirmed to localize on the cell surface by papain treatment and immunofluorescent labeling. Analysis of this displayed protein was also carried out. This strain is the first one to have been endowed artificially with organic solvent tolerance. This is a good example of creating cells exhibiting new phenotypes using a combinatorial protein library.
利用“DNA随机引物法”产生的随机DNA片段构建了一个组合随机蛋白质文库,“DNA随机引物法”是“随机引物重组”的一种改进方法,使用随机序列引物和来自酿酒酵母的模板cDNA。为了在酵母细胞表面表达该文库,构建了一个酵母多拷贝盒式载体,其中编码随机蛋白质的DNA片段与编码α-凝集素C末端320个氨基酸的基因融合。RGS(His)(6)表位免疫反应的荧光标记证实了随机蛋白质的表面展示。酵母细胞上异源随机蛋白质的表面展示将有广泛的应用。例如,从展示该组合文库的转化子中筛选出了一种在壬烷覆盖的培养基中能很好生长的耐正壬烷酵母菌株。正壬烷耐受性取决于转化质粒,通过木瓜蛋白酶处理和免疫荧光标记证实相关蛋白质定位于细胞表面。还对这种展示的蛋白质进行了分析。该菌株是首例人工赋予有机溶剂耐受性的菌株。这是利用组合蛋白质文库创造表现出新表型细胞的一个很好的例子。