Schwarz T F, Yeats S M, Connolly P, McConnell D J
Mol Gen Genet. 1981;183(1):181-6. doi: 10.1007/BF00270159.
A spontaneous rifampicin-resistant mutant of E. coli K12, RpoB26, which inhibits the growth of bacteriophage T7 has been isolated. The mutation is an RNA polymerase mutation; it also restores the wild-type effect of polar mutations in a rho-deficient strain, probably by restoring transcriptional termination. The efficiency of plating (e.o.p.) of wild-type T7, and of some early region deletion and point mutants of T7 tested, is reduced on RpoB26 by a factor of 10(-4). However, some deletion mutants are inhibited more severely (up to 10(-7) on RpoB26. We argue that these differences may reflect variations in the frequency of transcriptional termination before gene 1, an essential gene which codes for the T7 RNA polymerase (Summers and Siegel 1970; Chamberlin et al. 1970). We also present data which suggest that the product of a late T7 gene plays a role, by some interaction with the product of gene 1, in the inhibition of T7 in RpoB26. We suggest that different levels of expression of gene 1 may lead to different degrees of inhibition of T7 strains in RpoB26.
已分离出大肠杆菌K12的一种自发利福平抗性突变体RpoB26,它能抑制噬菌体T7的生长。该突变是一种RNA聚合酶突变;它还能恢复rho缺陷型菌株中极性突变的野生型效应,可能是通过恢复转录终止实现的。野生型T7以及所测试的T7一些早期区域缺失突变体和点突变体在RpoB26上的平板接种效率(e.o.p.)降低了10^(-4)倍。然而,一些缺失突变体受到的抑制更严重(在RpoB26上高达10^(-7))。我们认为这些差异可能反映了在基因1之前转录终止频率的变化,基因1是一个编码T7 RNA聚合酶的必需基因(萨默斯和西格尔,1970年;钱伯林等人,1970年)。我们还提供了数据表明,T7晚期基因的产物通过与基因1的产物的某种相互作用,在RpoB26中对T7的抑制中发挥作用。我们认为基因1的不同表达水平可能导致RpoB26中T7菌株受到不同程度的抑制。