Holz C, Lueking A, Bovekamp L, Gutjahr C, Bolotina N, Lehrach H, Cahill D J
Technical University Berlin, Institute for Biotechnology, D-13355 Berlin, Germany.
Genome Res. 2001 Oct;11(10):1730-5. doi: 10.1101/gr.181501.
We developed a high-throughput technique for the generation of cDNA libraries in the yeast Saccharomyces cerevisiae which enables the selection of cloned cDNA inserts containing open reading frames (ORFs). For direct screening of random-primed cDNA libraries, we have constructed a yeast shuttle/expression vector, the so-called ORF vector pYEXTSH3, which allows the enriched growth of protein expression clones. The selection system is based on the HIS3 marker gene fused to the C terminus of the cDNA insert. The cDNAs cloned in-frame result in histidine prototrophic yeast cells growing on minimal medium, whereas clones bearing the vector without insert or out-of-frame inserts should not grow on this medium. A randomly primed cDNA library from human fetal brain tissue was cloned in this novel vector, and using robot technology the selected clones were arrayed in microtiter plates and were analyzed by sequencing and for protein expression. In the constructed cDNA expression library, about 60% of clones bear an insert in the correct reading frame. In comparison to unselected libraries it was possible to increase the clones with inserts in the correct reading frame more than fourfold, from 14% to 60%. With the expression system described here, we could avoid time-consuming and costly techniques for identification of clones expressing protein by using antibody screening on high-density filters and subsequently rearraying the selected clones in a new "daughter" library. The advantage of this ORF vector is that, in a one-step screening procedure, it allows the generation of expression libraries enriched for clones with correct reading frames as sources of recombinant proteins.
我们开发了一种用于在酿酒酵母中生成cDNA文库的高通量技术,该技术能够筛选出含有开放阅读框(ORF)的克隆cDNA插入片段。为了直接筛选随机引物cDNA文库,我们构建了一种酵母穿梭/表达载体,即所谓的ORF载体pYEXTSH3,它能使蛋白质表达克隆得到富集生长。筛选系统基于与cDNA插入片段C末端融合的HIS3标记基因。以正确读码框克隆的cDNA会使组氨酸原养型酵母细胞在基本培养基上生长,而携带无插入片段的载体或读码框外插入片段的克隆则不能在此培养基上生长。将来自人类胎儿脑组织的随机引物cDNA文库克隆到这种新型载体中,并使用机器人技术将筛选出的克隆排列在微孔板中,然后通过测序和蛋白质表达分析进行研究。在所构建的cDNA表达文库中,约60%的克隆在正确的读码框中带有插入片段。与未筛选的文库相比,有可能将正确读码框中带有插入片段的克隆数量增加四倍多,从14%提高到60%。使用本文所述的表达系统,我们可以避免通过在高密度滤膜上进行抗体筛选以及随后将筛选出的克隆重新排列到新的“子代”文库中这种耗时且昂贵的蛋白质表达克隆鉴定技术。这种ORF载体的优势在于,在一步筛选过程中,它能够生成富含正确读码框克隆的表达文库,作为重组蛋白的来源。