Bagdasarian M, Bailone A, Bagdasarian M M, Manning P A, Lurz R, Timmis K N, Devoret R
Proc Natl Acad Sci U S A. 1986 Aug;83(15):5723-6. doi: 10.1073/pnas.83.15.5723.
Plasmid R6-5 contains a locus whose product inhibits induction of sfiA and prophage lambda in a recA441 mutant at 42 degrees C and in a recA+ host after treatment with nalidixic acid. This plasmidic SOS-inhibition locus (psi) is situated on an 8.1-kilobase DNA fragment near oriT, the origin of plasmid R6-5 conjugational transfer. Loss of the Psi function, resulting from the insertion of Tn3 into psi+, greatly reduced the synthesis of two proteins, designated PsiA (Mr 24,500) and PsiB (Mr 12,500). Using host cells in which there was an inactive LexA repressor, we found that Psi function does not act by interfering with the expression of the SOS pathway. The Psi function may affect the generation of an SOS signal. We postulate that during the course of evolution, the Psi function has been selected in some conjugative plasmids so as to permit them to transfer single-stranded DNA without generating an SOS signal.
质粒R6 - 5含有一个位点,其产物在42℃下可抑制recA441突变体中sfiA和原噬菌体λ的诱导,以及在用萘啶酸处理后的recA +宿主中sfiA和原噬菌体λ的诱导。这个质粒的SOS抑制位点(psi)位于oriT附近一个8.1千碱基的DNA片段上,oriT是质粒R6 - 5接合转移的起点。由于Tn3插入psi +导致Psi功能丧失,大大降低了两种蛋白质的合成,这两种蛋白质分别命名为PsiA(分子量24,500)和PsiB(分子量12,500)。利用含有无活性LexA阻遏物的宿主细胞,我们发现Psi功能并非通过干扰SOS途径的表达来发挥作用。Psi功能可能会影响SOS信号的产生。我们推测,在进化过程中,一些接合质粒中选择了Psi功能,以便它们能够转移单链DNA而不产生SOS信号。