Fröhlich K U, Entian K D, Mecke D
Mol Gen Genet. 1984;194(1-2):144-8. doi: 10.1007/BF00383509.
Carbon catabolite repression in yeast depends on catalytic active hexokinase isoenzyme PII ( Entian 1980a ). A yeast strain lacking hexokinase isoenzymes PI and PII was transformed, using a recombinant pool with inserts of yeast nuclear DNA up to 10 kbp in length. One hundred transformants for hexokinase were obtained. All selected plasmids coded for hexokinase isoenzyme PII, none for hexokinase isoenzyme PI, and carbon catabolite repression was restored in the transformants. Thirty-five independently isolated stable plasmids were investigated further. Analysis with the restriction enzyme EcoRI showed that these plasmids fell into two classes with different restriction behaviour. One representative of each class was amplified in Escherichia coli and transferred back into the yeast hexokinase-deficient strain with concomitant complementation of the nuclear mutation. The two types of insert were analysed in detail with 16 restriction enzymes, having 0-3 cleavage sites on transformant vector YRp7 . The plasmids differed from each other by the orientation of the yeast insert in the vector. After yeast transformation with fragments of one plasmid the hexokinase PII gene was localised within a region of 1.65 kbp.
酵母中的碳分解代谢物阻遏取决于具有催化活性的己糖激酶同工酶PII(恩蒂安,1980a)。使用插入长度达10 kbp酵母核DNA的重组文库,对缺乏己糖激酶同工酶PI和PII的酵母菌株进行转化。获得了100个己糖激酶转化子。所有筛选出的质粒编码己糖激酶同工酶PII,无编码己糖激酶同工酶PI的,且转化子中恢复了碳分解代谢物阻遏。对35个独立分离的稳定质粒进行了进一步研究。用限制性内切酶EcoRI分析表明,这些质粒分为具有不同限制性酶切行为的两类。每类各选一个代表在大肠杆菌中扩增,并重新导入酵母己糖激酶缺陷型菌株,同时使核突变得到互补。用16种限制性内切酶对两种类型的插入片段进行了详细分析,这些酶在转化载体YRp7上有0 - 3个切割位点。这两种质粒的区别在于酵母插入片段在载体中的方向。用一种质粒的片段转化酵母后,己糖激酶PII基因定位于1.65 kbp的区域内。