Olsthoorn-Tieleman Lian N, Palstra Robert-Jan T S, van Wezel Gilles P, Bibb Mervyn J, Pleij Cornelis W A
Leiden Institute of Chemistry, Leiden University, P.O. Box 9502, 2300 RA Leiden, The Netherlands.
J Bacteriol. 2007 May;189(9):3581-90. doi: 10.1128/JB.01810-06. Epub 2007 Mar 2.
The antibiotic kirromycin inhibits prokaryotic protein synthesis by immobilizing elongation factor Tu (EF-Tu) on the elongating ribosome. Streptomyces ramocissimus, the producer of kirromycin, contains three tuf genes. While tuf1 and tuf2 encode kirromycin-sensitive EF-Tu species, the function of tuf3 is unknown. Here we demonstrate that EF-Tu3, in contrast to EF-Tu1 and EF-Tu2, is resistant to three classes of EF-Tu-targeted antibiotics: kirromycin, pulvomycin, and GE2270A. A mixture of EF-Tu1 and EF-Tu3 was sensitive to kirromycin and resistant to GE2270A, in agreement with the described modes of action of these antibiotics. Transcription of tuf3 was observed during exponential growth and ceased upon entry into stationary phase and therefore did not correlate with the appearance of kirromycin in stationary phase; thus, it is unlikely that EF-Tu3 functions as a resistant alternative for EF-Tu1. EF-Tu3 from Streptomyces coelicolor A3(2) was also resistant to kirromycin and GE2270A, suggesting that multiple antibiotic resistance is an intrinsic feature of EF-Tu3 species. The GE2270A-resistant character of EF-Tu3 demonstrated that this divergent elongation factor is capable of substituting for EF-Tu1 in vivo.
抗生素奇霉素通过将延伸因子Tu(EF-Tu)固定在延伸中的核糖体上来抑制原核生物的蛋白质合成。奇霉素的产生菌多枝链霉菌含有三个tuf基因。虽然tuf1和tuf2编码对奇霉素敏感的EF-Tu种类,但tuf3的功能尚不清楚。在此我们证明,与EF-Tu1和EF-Tu2不同,EF-Tu3对三类靶向EF-Tu的抗生素具有抗性:奇霉素、普尔沃霉素和GE2270A。EF-Tu1和EF-Tu3的混合物对奇霉素敏感,对GE2270A具有抗性,这与这些抗生素所描述的作用模式一致。在指数生长期观察到tuf3的转录,进入稳定期后停止,因此与稳定期奇霉素的出现无关;因此,EF-Tu3不太可能作为EF-Tu1的抗性替代物发挥作用。来自天蓝色链霉菌A3(2)的EF-Tu3对奇霉素和GE2270A也具有抗性,这表明多重抗生素抗性是EF-Tu3种类的固有特征。EF-Tu3对GE2270A的抗性特征表明,这种不同的延伸因子能够在体内替代EF-Tu1。