Artsimovitch Irina, Vassylyeva Marina N, Svetlov Dmitri, Svetlov Vladimir, Perederina Anna, Igarashi Noriyuki, Matsugaki Naohiro, Wakatsuki Soichi, Tahirov Tahir H, Vassylyev Dmitry G
Department of Microbiology, The Ohio State University, 484 West 12th Avenue, Columbus, Ohio 43210, USA.
Cell. 2005 Aug 12;122(3):351-63. doi: 10.1016/j.cell.2005.07.014.
Rifamycins, the clinically important antibiotics, target bacterial RNA polymerase (RNAP). A proposed mechanism in which rifamycins sterically block the extension of nascent RNA beyond three nucleotides does not alone explain why certain RNAP mutations confer resistance to some but not other rifamycins. Here we show that unlike rifampicin and rifapentin, and contradictory to the steric model, rifabutin inhibits formation of the first and second phosphodiester bonds. We report 2.5 A resolution structures of rifabutin and rifapentin complexed with the Thermus thermophilus RNAP holoenzyme. The structures reveal functionally important distinct interactions of antibiotics with the initiation sigma factor. Strikingly, both complexes lack the catalytic Mg2+ ion observed in the apo-holoenzyme, whereas an increase in Mg2+ concentration confers resistance to rifamycins. We propose that a rifamycin-induced signal is transmitted over approximately 19 A to the RNAP active site to slow down catalysis. Based on structural predictions, we designed enzyme substitutions that apparently interrupt this allosteric signal.
利福霉素是临床上重要的抗生素,作用于细菌RNA聚合酶(RNAP)。一种提出的机制认为利福霉素在空间上阻碍新生RNA延伸超过三个核苷酸,但这一机制并不能单独解释为什么某些RNAP突变会使细菌对某些利福霉素产生抗性,而对其他利福霉素却没有抗性。在这里,我们表明,与利福平及利福喷汀不同,与空间模型相反,利福布汀抑制第一个和第二个磷酸二酯键的形成。我们报道了利福布汀和利福喷汀与嗜热栖热菌RNAP全酶复合物的分辨率为2.5埃的结构。这些结构揭示了抗生素与起始σ因子在功能上重要的不同相互作用。引人注目的是,两种复合物都缺少在无配体全酶中观察到的催化Mg2+离子,而Mg2+浓度的增加会使细菌对利福霉素产生抗性。我们提出,利福霉素诱导的信号通过约19埃传递到RNAP活性位点以减缓催化作用。基于结构预测,我们设计了明显中断这种变构信号的酶替代物。