Fantes P A, Creanor J
J Gen Microbiol. 1984 Dec;130(12):3265-73. doi: 10.1099/00221287-130-12-3265.
The mechanism of resistance to the arginine analogue L-canavanine, and of arginine uptake, were examined in the fission yeast Schizosaccharomyces pombe. Two mutants with increased resistance to canavanine were analysed genetically: both were double mutants, and in each case one mutation conferred resistance to canavanine, while the other enhanced this resistance. Evidence is presented that can 1.1 strains are defective in one system for arginine uptake, which presumably prevents entry of canavanine into the cell. This system operates in the wild-type whether the nitrogen source supplied is ammonium or glutamate. Double mutants carrying can 1.1 and an arginine requirement are unable to grow on ammonium medium even when supplied with exogenous argine, while growth can occur on glutamate plus arginine. This suggested the existence of a second uptake system for arginine which is absent during growth on ammonium, and direct measurements of the rates of arginine uptake under various conditions confirmed this. Our observations closely parallel those made on the budding yeast Saccharomyces cerevisiae. The ability to select for or against function of the can 1 gene should facilitate certain types of genetical analysis in S.pombe.
在裂殖酵母粟酒裂殖酵母中研究了对精氨酸类似物L-刀豆氨酸的抗性机制以及精氨酸的摄取。对两个对刀豆氨酸抗性增强的突变体进行了遗传分析:二者均为双突变体,且在每种情况下,一个突变赋予对刀豆氨酸的抗性,而另一个则增强了这种抗性。有证据表明,can 1.1菌株在一种精氨酸摄取系统中存在缺陷,这可能会阻止刀豆氨酸进入细胞。无论提供的氮源是铵还是谷氨酸盐,该系统在野生型中均起作用。携带can 1.1且需要精氨酸的双突变体即使供应外源精氨酸也无法在铵培养基上生长,而在谷氨酸盐加精氨酸的情况下则可以生长。这表明存在第二种精氨酸摄取系统,在以铵为氮源生长期间不存在该系统,并且在各种条件下对精氨酸摄取速率的直接测量证实了这一点。我们的观察结果与在芽殖酵母酿酒酵母上的观察结果非常相似。选择can 1基因功能的正向或反向作用的能力应有助于粟酒裂殖酵母中某些类型的遗传分析。