Smith I, Paress P
J Bacteriol. 1978 Sep;135(3):1107-17. doi: 10.1128/jb.135.3.1107-1117.1978.
Spontaneous mutations causing resistance to the EF-Tu-specific antibiotic kirromycin have been isolated and mapped in Bacillus subtilis. Three-factor transductional and transformational crosses have placed the kir locus proximal to ery-1 and distal to strA (rpsL) and several mutations affecting elongation factors EF-G and EF-Tu, in the order: cysA strA [fus-1/ts-6(EF-G)] [ts-5(EF-Tu)] kir ery-1 spcA. Purified EF-Tu from mutant strains is more resistant to kirromycin as measured by in vitro protein synthesis and also shows a more acidic isoelectric point than wild-type EF-Tu. This indicates that the kir locus is the genetic determinant (tuf) for EF-Tu and that there is a single active gene for this enzyme in B. subtilis.
在枯草芽孢杆菌中已分离出导致对EF-Tu特异性抗生素奇霉素产生抗性的自发突变,并对其进行了定位。三因子转导和转化杂交已将奇霉素抗性基因座(kir)定位在ery-1近端、strA(rpsL)远端,以及几个影响延伸因子EF-G和EF-Tu的突变位点之间,顺序如下:cysA strA [fus-1/ts-6(EF-G)] [ts-5(EF-Tu)] kir ery-1 spcA。通过体外蛋白质合成测定,突变菌株纯化的EF-Tu对奇霉素的抗性更强,并且其等电点比野生型EF-Tu更偏酸性。这表明kir基因座是EF-Tu的遗传决定因子(tuf),并且在枯草芽孢杆菌中该酶有一个单一的活性基因。