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首页> 外文期刊>Nature Communications >Chemically related 4,5-linked aminoglycoside antibiotics drive subunit rotation in opposite directions
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Chemically related 4,5-linked aminoglycoside antibiotics drive subunit rotation in opposite directions

机译:与化学相关的4,5连接的氨基糖苷类抗生素以相反的方向驱动亚基旋转

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摘要

Dynamic remodelling of intersubunit bridge B2, a conserved RNA domain of the bacterial ribosome connecting helices 44 (h44) and 69 (H69) of the small and large subunit, respectively, impacts translation by controlling intersubunit rotation. Here we show that aminoglycosides chemically related to neomycin—paromomycin, ribostamycin and neamine—each bind to sites within h44 and H69 to perturb bridge B2 and affect subunit rotation. Neomycin and paromomycin, which only differ by their ring-I 6′-polar group, drive subunit rotation in opposite directions. This suggests that their distinct actions hinge on the 6′-substituent and the drug’s net positive charge. By solving the crystal structure of the paromomycin–ribosome complex, we observe specific contacts between the apical tip of H69 and the 6′-hydroxyl on paromomycin from within the drug’s canonical h44-binding site. These results indicate that aminoglycoside actions must be framed in the context of bridge B2 and their regulation of subunit rotation.
机译:亚基间桥B2的动态重塑是细菌核糖体的保守RNA结构域,分别连接小亚基和大亚基的螺旋44(h44)和69(H69),通过控制亚基间的旋转影响翻译。在这里,我们显示了与新霉素化学相关的氨基糖苷类-巴龙霉素,核糖霉素和神经胺-各自与h44和H69内的位点结合,干扰B2桥并影响亚基旋转。新霉素和巴龙霉素仅在其环I 6'-极性基团上有所不同,它们沿相反的方向驱动亚基旋转。这表明它们的独特作用取决于6'取代基和药物的净正电荷。通过解析巴龙霉素-核糖体复合物的晶体结构,我们观察到H69的顶尖与巴龙霉素的规范h44结合位点内巴龙霉素的6'-羟基之间有特定的接触。这些结果表明,氨基糖苷作用必须在桥B2及其对亚基旋转的调节的背景下进行。

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