Ariel M, Lavi H, Holtzer E, Grossowicz N
J Bacteriol. 1982 May;150(2):616-22. doi: 10.1128/jb.150.2.616-622.1982.
We describe the isolation and characterization of a Pediococcus cerevisiae thymidine-requiring mutant and its thymidine-independent revertant. The mutant strain lacked thymidylate synthetase activity and had an absolute requirement for low concentrations (2 micrograms/ml) of thymidine in addition to a requirement for N-5-formyl tetrahydrofolic acid (folinate). Even at high concentrations (up to 500 micrograms/ml), thymine could not replace thymidine. In contrast to its wild-type parent, which grows only on folinate, the thymidine-requiring mutant (Thy- Fol+) was able to take up and grow on picogram quantities of unreduced folic acid. When both strains were grown on folinate, the Thy- Fol+ strain was at least 10(3)-fold more resistant to the folic acid analogs aminopterin and methotrexate than the wild-type strain. On the other hand, when grown on folic acid, the Thy- Fol+ strain was as sensitive to the folic acid analogs as the Thy+ Fol+ strain and was 10(2)-fold more sensitive than the wild-type strain grown on folinate. The thymidine-independent revertant (Thy+ Fol+) regained the wild-type level of thymidylate synthetase activity, but maintained the ability to take up and grow on unreduced folic acid like its Thy- Fol+ parent.
我们描述了一株啤酒片球菌胸腺嘧啶核苷需求型突变体及其胸腺嘧啶核苷非依赖型回复突变体的分离与特性。该突变菌株缺乏胸苷酸合成酶活性,除了需要N-5-甲酰四氢叶酸(亚叶酸)外,对低浓度(2微克/毫升)的胸腺嘧啶核苷有绝对需求。即使在高浓度(高达500微克/毫升)下,胸腺嘧啶也不能替代胸腺嘧啶核苷。与其仅在亚叶酸上生长的野生型亲本不同,胸腺嘧啶核苷需求型突变体(Thy- Fol+)能够摄取皮克量的未还原叶酸并在其上生长。当两种菌株都在亚叶酸上生长时,Thy- Fol+菌株对叶酸类似物氨甲蝶呤和甲氨蝶呤的抗性比野生型菌株至少高10³倍。另一方面,当在叶酸上生长时,Thy- Fol+菌株对叶酸类似物的敏感性与Thy+ Fol+菌株相同,且比在亚叶酸上生长的野生型菌株敏感10²倍。胸腺嘧啶核苷非依赖型回复突变体(Thy+ Fol+)恢复了野生型水平的胸苷酸合成酶活性,但像其Thy- Fol+亲本一样,保留了摄取未还原叶酸并在其上生长的能力。