Bebenek A, Pietrzykowska I
Institute of Biochemistry and Biophysics, Polish Academy of Science, Warsaw, Poland.
Mol Gen Genet. 1996 Apr 10;250(6):674-80. doi: 10.1007/BF02172978.
Further studies on the isfA mutation responsible for anti-SOS and antimutagenic activities in Escherichia coli are described. We have previously shown that the isfA mutation inhibits mutagenesis and other SOS-dependent phenomena, possibly by interfering with RecA coprotease activity. The isfA mutation has now been demonstrated also to suppress mutator activity in E. coli recA730 and recA730 lexA51(Def) strains that constitutively express RecA coprotease activity. We further show that the antimutator activity of the isfA mutation is related to inhibition of RecA coprotease-dependent processing of UmuD. Expression of UmuD' from plasmid pGW2122 efficiently restores UV-induced mutagenesis in the recA730 isfA strain and partially restores its mutator activity. On the other hand, overproduction of UmuD'C proteins from pGW2123 plasmid markedly enhances UV sensitivity with no restoration of mutability.
本文描述了对大肠杆菌中负责抗SOS和抗诱变活性的isfA突变的进一步研究。我们之前已经表明,isfA突变可能通过干扰RecA共蛋白酶活性来抑制诱变和其他SOS依赖性现象。现在已经证明,isfA突变也能抑制大肠杆菌recA730和recA730 lexA51(Def)菌株中的诱变活性,这些菌株组成型表达RecA共蛋白酶活性。我们进一步表明,isfA突变的抗诱变活性与抑制RecA共蛋白酶依赖性的UmuD加工有关。从质粒pGW2122表达UmuD'可有效恢复recA730 isfA菌株中的紫外线诱导诱变,并部分恢复其诱变活性。另一方面,从pGW2123质粒过量表达UmuD'C蛋白会显著增强紫外线敏感性,且不会恢复其诱变能力。