Barbé J, Gibert I, Guerrero R
Mutat Res. 1986 Jul;166(1):9-16. doi: 10.1016/0167-8817(86)90035-0.
Survival and induction of the SOS system by 5-azacytidine, an analog of cytidine, were studied in Escherichia coli K-12. This compound did not produce any effect on the viability of dcm and dam dcm mutants. Furthermore, recA430 and lexA1 strains (both mutations interfere with LexA repressor cleavage but not recombination proficiency) were more resistant than the wild-type strain of E. coli K-12. In contrast, recBC and recA13 mutants were more sensitive to 5-azacytidine than the wild type. Transient exposure of E. coli to 5-azacytidine for 60 min induced both recA-dependent inhibition of cell division and induction of lambda prophage in Dcm+ strains but not in Dcm- mutants. Expression of both functions was dependent on recBC exonuclease. On the other hand, 5-azacytidine was unable to trigger the induction of umuCD and mucB genes and no amplification of RecA protein synthesis in either Dcm+ or Dcm- strains was observed. These last results are in agreement with previously reported data suggesting that there is a discrimination in the expression of the several SOS functions and that some SOS genes may be induced without amplification of RecA protein synthesis.
在大肠杆菌K-12中研究了胞苷类似物5-氮杂胞苷对SOS系统的存活及诱导作用。该化合物对dcm和dam dcm突变体的活力没有任何影响。此外,recA430和lexA1菌株(这两种突变均干扰LexA阻遏物的切割,但不影响重组能力)比大肠杆菌K-12野生型菌株更具抗性。相反,recBC和recA13突变体对5-氮杂胞苷比野生型更敏感。将大肠杆菌短暂暴露于5-氮杂胞苷60分钟,可诱导Dcm+菌株中recA依赖的细胞分裂抑制和λ原噬菌体诱导,但在Dcm-突变体中则不会。这两种功能的表达均依赖于recBC核酸外切酶。另一方面,5-氮杂胞苷无法触发umuCD和mucB基因的诱导,并且在Dcm+或Dcm-菌株中均未观察到RecA蛋白合成的扩增。这些最新结果与先前报道的数据一致,表明在几种SOS功能的表达上存在差异,并且一些SOS基因可能在不扩增RecA蛋白合成的情况下被诱导。