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Inhibition of poly(A) polymerase by aminoglycosides

机译:氨基糖苷对聚(A)聚合酶的抑制作用

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Aminoglycosides are potent inhibitors of bacterial growth and are used clinically as antibiotics. However, their usage has declined in recent years due to the emergence of resistance and severe toxic side effects. Here we show that human poly(A) polymerase γ (PAPγ) is inhibited by aminoglycosides. The inhibition was pH dependent and could be released by Mg(Ⅱ) ions in a competitive manner suggesting that electrostatic interactions are important for inhibition and that the binding sites for aminoglycosides overlap with Mg(Ⅱ) ion binding sites. Kinetic analysis revealed that aminoglycosides of the neomycin and kanamycin families behaved as mixed non-competitive inhibitors for the PAPγ substrates oligoA_(15) and ATP. Interestingly, sisomicin and 5-epi-sisomycin showed a competitive mechanism of inhibition for the oligoA_(15) whereas they inhibited the ATP substrate mixed non-competitive. This implies that different aminoglycosides bind in different ways to a common binding pocket and suggests that the binding sites for related aminoglycosides are not overlapping even if they may share molecular determinants. Our study emphasizes the possibility that aminoglycoside toxicity could be due to interference with housekeeping enzymes involved in breaking and forming phosphodiester bonds.
机译:氨基糖苷类是细菌生长的有效抑制剂,在临床上被用作抗生素。然而,由于耐药性的出现和严重的毒副作用,近年来它们的使用量有所下降。在这里,我们显示了人类聚(A)聚合酶γ(PAPγ)被氨基糖苷抑制。抑制作用是pH依赖性的,可以通过竞争性方式被Mg(Ⅱ)离子释放,这表明静电相互作用对抑制作用很重要,氨基糖苷的结合位点与Mg(Ⅱ)离子结合位点重叠。动力学分析表明,新霉素和卡那霉素家族的氨基糖苷类作为PAPγ底物oligoA_(15)和ATP的混合非竞争性抑制剂。有趣的是,西索霉素和5-表波霉素显示出竞争性的抑制oligoA_(15)的机制,而它们抑制了非竞争性的ATP底物混合。这意味着不同的氨基糖苷以不同的方式结合到一个共同的结合口袋上,并暗示即使相关的氨基糖苷可能共享分子决定簇,它们的结合位点也不重叠。我们的研究强调氨基糖苷毒性可能是由于干扰参与破坏和形成磷酸二酯键的内务酶的可能性。

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