Campbell K M, Chambliss G H
Mol Gen Genet. 1977 Dec 30;158(2):193-200. doi: 10.1007/BF00268313.
A streptomycin-resistant mutantant of Bacillus subtilis that is also asporogenous, was isolated and partially characterized. This strain, SRB15, sporulated at a frequency of about 1% compared to the wild type frequency of greater than 70%. The two phenotypes were inseparable by transformation, suggesting that this strain carries a single mutation that causes it to be both streptomycin-resistant and spore-minus. The mutation cotransduces with cysA, the closest auxotrophic marker to the "ribosomal region" of the B. subtilis chromosome, with a frequency of 68%. SRB15 showed no cross resistence to other antiobiotics tested, including the aminoglycosides kanamycin, neomycin and spectinomycin. Ribosomes obtained from the mutant were at least 200-fold more resistant in vitro to streptomycin than were wild type ribosomes in the translation of phage SPO1 RNA. The kinetics of in vitro translation of this natural message were indistinguishable for mutant and wild type ribosomes. The level of misreading, as measured by poly(U)-directed isoleucine incorporation, by mutant ribosomes was less than that by wild type ribosomes.
一株枯草芽孢杆菌的链霉素抗性突变体,它也是无芽孢的,已被分离并进行了部分特性鉴定。该菌株SRB15形成芽孢的频率约为1%,而野生型的频率大于70%。这两种表型通过转化无法分离,表明该菌株携带一个单一突变,使其既具有链霉素抗性又无芽孢。该突变与cysA共转导,cysA是枯草芽孢杆菌染色体“核糖体区域”最接近的营养缺陷型标记,共转导频率为68%。SRB15对所测试的其他抗生素没有交叉抗性,包括氨基糖苷类的卡那霉素、新霉素和壮观霉素。从突变体中获得的核糖体在体外对链霉素的抗性比野生型核糖体在噬菌体SPO1 RNA翻译中至少高200倍。对于突变体和野生型核糖体,这种天然信使的体外翻译动力学没有区别。通过聚(U)指导的异亮氨酸掺入测量,突变体核糖体的错读水平低于野生型核糖体。