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首页> 外文期刊>Antimicrobial agents and chemotherapy. >Interaction of pleuromutilin derivatives with the ribosomal peptidyl transferase center.
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Interaction of pleuromutilin derivatives with the ribosomal peptidyl transferase center.

机译:截短侧耳素衍生物与核糖体肽基转移酶中心的相互作用。

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摘要

Tiamulin is a pleuromutilin antibiotic that is used in veterinary medicine. The recently published crystal structure of a tiamulin-50S ribosomal subunit complex provides detailed information about how this drug targets the peptidyl transferase center of the ribosome. To promote rational design of pleuromutilin-based drugs, the binding of the antibiotic pleuromutilin and three semisynthetic derivatives with different side chain extensions has been investigated using chemical footprinting. The nucleotides A2058, A2059, G2505, and U2506 are affected in all of the footprints, suggesting that the drugs are similarly anchored in the binding pocket by the common tricyclic mutilin core. However, varying effects are observed at U2584 and U2585, indicating that the side chain extensions adopt distinct conformations within the cavity and thereby affect the rRNA conformation differently. An Escherichia coli L3 mutant strain is resistant to tiamulin and pleuromutilin, but not valnemulin, implying that valnemulin isbetter able to withstand an altered rRNA binding surface around the mutilin core. This is likely due to additional interactions made between the valnemulin side chain extension and the rRNA binding site. The data suggest that pleuromutilin drugs with enhanced antimicrobial activity may be obtained by maximizing the number of interactions between the side chain moiety and the peptidyl transferase cavity.
机译:Tiamulin是一种截短侧耳素抗生素,用于兽医。最近公布的tiamulin-50S核糖体亚基复合物的晶体结构提供了有关该药物如何靶向核糖体肽基转移酶中心的详细信息。为了促进基于截短侧耳素的药物的合理设计,已使用化学足迹法研究了抗生素截短侧耳素与具有不同侧链延伸的三种半合成衍生物的结合。核苷酸A2058,A2059,G2505和U2506在所有足迹中均受到影响,这表明药物被共同的三环毛细林蛋白核类似地锚定在结合袋中。但是,在U2584和U2585上观察到了不同的影响,表明侧链延伸在腔内采用不同的构象,从而以不同的方式影响rRNA构象。大肠杆菌L3突变株对调菌素和截短侧耳素具有抗性,但对缬氨菌灵不具有耐药性,这表明缬氨菌素更好地能够承受围绕着该菌丝素核心的rRNA结合表面的改变。这可能是由于缬氨菌灵侧链延伸与rRNA结合位点之间发生了其他相互作用。数据表明,可以通过使侧链部分和肽基转移酶腔之间的相互作用数最大化来获得具有增强的抗菌活性的截短侧耳素药物。

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