Wach A, Brachat A, Pöhlmann R, Philippsen P
Institut für Angewandte Mikrobiologie, Universität Basel, Switzerland.
Yeast. 1994 Dec;10(13):1793-808. doi: 10.1002/yea.320101310.
We have constructed and tested a dominant resistance module, for selection of S. cerevisiae transformants, which entirely consists of heterologous DNA. This kanMX module contains the known kanr open reading-frame of the E. coli transposon Tn903 fused to transcriptional and translational control sequences of the TEF gene of the filamentous fungus Ashbya gossypii. This hybrid module permits efficient selection of transformants resistant against geneticin (G418). We also constructed a lacZMT reporter module in which the open reading-frame of the E. coli lacZ gene (lacking the first 9 codons) is fused at its 3' end to the S. cerevisiae ADH1 terminator. KanMX and the lacZMT module, or both modules together, were cloned in the center of a new multiple cloning sequence comprising 18 unique restriction sites flanked by Not I sites. Using the double module for constructions of in-frame substitutions of genes, only one transformation experiment is necessary to test the activity of the promotor and to search for phenotypes due to inactivation of this gene. To allow for repeated use of the G418 selection some kanMX modules are flanked by 470 bp direct repeats, promoting in vivo excision with frequencies of 10(-3)-10(-4). The 1.4 kb kanMX module was also shown to be very useful for PCR based gene disruptions. In an experiment in which a gene disruption was done with DNA molecules carrying PCR-added terminal sequences of only 35 bases homology to each target site, all twelve tested geneticin-resistant colonies carried the correctly integrated kanMX module.
我们构建并测试了一个显性抗性模块,用于筛选酿酒酵母转化子,该模块完全由异源DNA组成。这个kanMX模块包含大肠杆菌转座子Tn903已知的卡那霉素抗性开放阅读框,它与丝状真菌棉阿舒囊霉TEF基因的转录和翻译控制序列融合。这个杂交模块允许高效筛选对遗传霉素(G418)具有抗性的转化子。我们还构建了一个lacZMT报告模块,其中大肠杆菌lacZ基因的开放阅读框(缺少前9个密码子)在其3'端与酿酒酵母ADH1终止子融合。KanMX和lacZMT模块,或两个模块一起,被克隆到一个新的多克隆序列的中心,该序列包含18个独特的限制性酶切位点,两侧为Not I位点。使用双模块进行基因的框内替换构建,只需要进行一次转化实验就可以测试启动子的活性,并寻找由于该基因失活而产生的表型。为了允许重复使用G418选择,一些kanMX模块两侧有470 bp的直接重复序列,促进体内切除,频率为10(-3)-10(-4)。1.4 kb的kanMX模块也被证明对基于PCR的基因破坏非常有用。在一个实验中,用与每个靶位点只有35个碱基同源性的PCR添加末端序列的DNA分子进行基因破坏,所有12个测试的对遗传霉素抗性的菌落都携带了正确整合的kanMX模块。