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首页> 外文期刊>Nucleic acids research >Differential induction of Leishmania donovani bi-subunit topoisomerase I–DNA cleavage complex by selected flavones and camptothecin: activity of flavones against camptothecin-resistant topoisomerase I
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Differential induction of Leishmania donovani bi-subunit topoisomerase I–DNA cleavage complex by selected flavones and camptothecin: activity of flavones against camptothecin-resistant topoisomerase I

机译:选定的黄酮和喜树碱对诱导的利什曼原虫多亚型双亚基拓扑异构酶I-DNA裂解复合物的诱导诱导:黄酮对耐喜树碱的拓扑异构酶I的活性

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Emergence of the bi-subunit topoisomerase I in the kinetoplastid family (Trypanosoma and Leishmania) has brought a new twist in topoisomerase research related to evolution, functional conservation and preferential sensitivities to the specific inhibitors of type IB topoisomerase family. In the present study, we describe that naturally occurring flavones baicalein, luteolin and quercetin are potent inhibitors of the recombinant Leishmania donovani topoisomerase I. These compounds bind to the free enzyme and also intercalate into the DNA at a very high concentration (300 μM) without binding to the minor grove. Here, we show that inhibition of topoisomerase I by these flavones is due to stabilization of topoisomerase I–DNA cleavage complexes, which subsequently inhibit the religation step. Their ability to stabilize the covalent topoisomerase I–DNA complex in vitro and in living cells is similar to that of the known topoisomerase I inhibitor camptothecin (CPT). However, in contrast to CPT, baicalein and luteolin failed to inhibit the religation step when the drugs were added to pre-formed enzyme substrate binary complex. This differential mechanism to induce the stabilization of cleavable complex with topoisomerase I and DNA by these selected flavones and CPT led us to investigate the effect of baicalein and luteolin on CPT-resistant mutant enzyme LdTOP1Δ39LS lacking 1–39 amino acids of the large subunit [B. B. Das, N. Sen, S. B. Dasgupta, A. Ganguly and H. K. Majumder (2005) J. Biol. Chem. 280, 16335–16344]. Baicalein and luteolin stabilize duplex oligonucleotide cleavage with LdTOP1Δ39LS. This observation was further supported by the stabilization of in vivo cleavable complex by baicalein and luteolin with highly CPT-resistant L.donovani strain. Taken together, our data suggest that the interacting amino acid residues of topoisomerase I may be partially overlapping or different for flavones and CPT. This study illuminates new properties of the flavones and provide additional insights into the ligand binding properties of L.donovani topoisomerase I.
机译:动素体家族(Trypanosoma和Leishmania)中双亚基拓扑异构酶I的出现为拓扑异构酶研究带来了新的变化,涉及到对IB型拓扑异构酶家族特定抑制剂的进化,功能保守性和优先敏感性。在本研究中,我们描述了天然存在的黄酮黄ical素,木犀草素和槲皮素是重组利什曼原虫多诺万尼拓扑异构酶I的有效抑制剂。这些化合物与游离酶结合,并以非常高的浓度(300μM)插入DNA绑定到小树林。在这里,我们证明了这些黄酮对拓扑异构酶I的抑制作用是由于拓扑异构酶I-DNA裂解复合物的稳定所致,从而抑制了连接步骤。它们在体外和在活细胞中稳定共价拓扑异构酶I–DNA复合物的能力与已知的拓扑异构酶I抑制剂喜树碱(CPT)相似。但是,与CPT相反,当将药物添加到预先形成的酶底物二元复合物中时,黄ical素和木犀草素不能抑制连接步骤。通过这些选定的黄酮和CPT诱导拓扑异构酶I和DNA裂解的复合物稳定的这种不同机制,使我们研究了黄ical素和木犀草素对CPT耐药突变酶LdTOP1Δ39LS缺乏大亚基[1-39个氨基酸]的作用。 B.Das,N.Sen,S.B.Dasgupta,A.Ganguly和H.K.Majumder(2005)J.化学280,16335–16344]。黄ical素和木犀草素可稳定LdTOP1Δ39LS的双链寡核苷酸切割。黄ical素和木犀草素对CPT具有高度抗药性的L.donovani菌株对体内可裂解复合物的稳定作用进一步支持了这一观察结果。两者合计,我们的数据表明拓扑异构酶I的相互作用的氨基酸残基可能是部分重叠或不同的黄酮和CPT。这项研究阐明了黄酮的新性质,并提供了进一步的洞察力L.donovani拓扑异构酶I的配体结合特性的见解。

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