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Inhibition of Zn(II) Binding Type IA Topoisomerases by Organomercury Compounds and Hg(II)

机译:有机汞化合物和汞(II)对Zn(II)结合Ia型拓扑异构酶的抑制作用

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摘要

Type IA topoisomerase activities are essential for resolving DNA topological barriers via an enzyme-mediated transient single strand DNA break. Accumulation of topoisomerase DNA cleavage product can lead to cell death or genomic rearrangement. Many antibacterial and anticancer drugs act as topoisomerase poison inhibitors that form stabilized ternary complexes with the topoisomerase covalent intermediate, so it is desirable to identify such inhibitors for type IA topoisomerases. Here we report that organomercury compounds were identified during a fluorescence based screening of the NIH diversity set of small molecules for topoisomerase inhibitors that can increase the DNA cleavage product of Yersinia pestis topoisomerase I. Inhibition of relaxation activity and accumulation of DNA cleavage product were confirmed for these organomercury compounds in gel based assays of Escherichia coli topoisomerase I. Hg(II), but not As(III), could also target the cysteines that form the multiple Zn(II) binding tetra-cysteine motifs found in the C-terminal domains of these bacterial topoisomerase I for relaxation activity inhibition. Mycobacterium tuberculosis topoisomerase I activity is not sensitive to Hg(II) or the organomercury compounds due to the absence of the Zn(II) binding cysteines. It is significant that the type IA topoisomerases with Zn(II) binding domains can still cleave DNA when interfered by Hg(II) or organomercury compounds. The Zn(II) binding domains found in human Top3α and Top3β may be potential targets of toxic metals and organometallic complexes, with potential consequence on genomic stability and development.
机译:IA型拓扑异构酶活性对于通过酶介导的瞬时单链DNA断裂来解决DNA拓扑障碍至关重要。拓扑异构酶DNA裂解产物的积累会导致细胞死亡或基因组重排。许多抗菌和抗癌药物充当拓扑异构酶毒物抑制剂,可与拓扑异构酶共价中间体形成稳定的三元复合物,因此,希望鉴定出这类IA型拓扑异构酶抑制剂。在这里我们报告说,在基于NIH的小分子拓扑集筛选中可以发现有机汞化合物,这些小分子是拓扑异构酶抑制剂,可以增加鼠疫耶尔森菌拓扑异构酶I的DNA裂解产物。确认了抑制松弛活性和DNA裂解产物的积累在大肠杆菌拓扑异构酶I的基于凝胶的测定中,这些有机汞化合物。Hg(II)(而不是As(III))也可以靶向形成在C末端结构域中形成多个Zn(II)结合四半胱氨酸基序的半胱氨酸这些细菌拓扑异构酶I用于抑制松弛活性。结核分枝杆菌拓扑异构酶I活性对Hg(II)或有机汞化合物不敏感,这是因为缺少结合Zn(II)的半胱氨酸。重要的是,当受Hg(II)或有机汞化合物干扰时,具有Zn(II)结合域的IA型拓扑异构酶仍可切割DNA。在人类Top3α和Top3β中发现的Zn(II)结合域可能是有毒金属和有机金属配合物的潜在靶标,对基因组稳定性和发育具有潜在的影响。

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