McCall J O, Witkin E M, Kogoma T, Roegner-Maniscalco V
J Bacteriol. 1987 Feb;169(2):728-34. doi: 10.1128/jb.169.2.728-734.1987.
In recA718 lexA+ strains of Escherichia coli, induction of the SOS response requires DNA damage. This implies that RecA718 protein, like RecA+ protein, must be converted, by a process initiated by the damage, to an activated form (RecA) to promote cleavage of LexA, the cellular repressor of SOS genes. However, when LexA repressor activity was abolished by a lexA-defective mutation [lexA(Def)], strains carrying the recA718 gene (but not recA+) showed strong SOS mutator activity and were able to undergo stable DNA replication in the absence of DNA damage (two SOS functions known to require RecA activity even when cleavage of LexA is not necessary). lambda lysogens of recA718 lexA(Def) strains exhibited mass induction of prophage, indicative of constitutive ability to cleave lambda repressor. When the cloned recA718 allele was present in a lexA+ strain on a plasmid, SOS mutator activity and beta-galactosidase synthesis under LexA control were expressed in proportion to the plasmid copy number. We conclude that RecA718 is capable of becoming activated without DNA damage for cleavage of LexA and lambda repressor, but only if it is amplified above its base-line level in lexA+ strains. At amplified levels, RecA718 was also constitutively activated for its roles in SOS mutagenesis and stable DNA replication. The nucleotide sequence of recA718 reveals two base substitutions relative to the recA+ sequence. We propose that the first allows the protein to become activated constitutively, whereas the second partially suppresses this capability.
在大肠杆菌的recA718 lexA+菌株中,SOS应答的诱导需要DNA损伤。这意味着RecA718蛋白与RecA+蛋白一样,必须通过由损伤引发的过程转化为活化形式(RecA),以促进LexA(SOS基因的细胞阻遏物)的裂解。然而,当lexA缺陷突变[lexA(Def)]消除LexA阻遏活性时,携带recA718基因(但不携带recA+基因)的菌株表现出强烈的SOS诱变活性,并且能够在没有DNA损伤的情况下进行稳定的DNA复制(已知即使在不需要LexA裂解时,这两种SOS功能也需要RecA活性)。recA718 lexA(Def)菌株的λ溶原菌表现出原噬菌体的大量诱导,这表明其具有组成型裂解λ阻遏物的能力。当克隆的recA718等位基因存在于lexA+菌株的质粒上时,LexA控制下的SOS诱变活性和β-半乳糖苷酶合成与质粒拷贝数成比例表达。我们得出结论,RecA718能够在没有DNA损伤的情况下被激活以裂解LexA和λ阻遏物,但前提是它在lexA+菌株中扩增至高于其基线水平。在扩增水平下,RecA718在SOS诱变和稳定DNA复制中的作用也被组成型激活。recA718的核苷酸序列相对于recA+序列有两个碱基替换。我们提出,第一个替换使蛋白质能够组成型激活,而第二个替换部分抑制了这种能力。