首页> 美国卫生研究院文献>Nucleic Acids Research >Novel high-throughput electrochemiluminescent assay for identification of human tyrosyl-DNA phosphodiesterase (Tdp1) inhibitors and characterization of furamidine (NSC 305831) as an inhibitor of Tdp1
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Novel high-throughput electrochemiluminescent assay for identification of human tyrosyl-DNA phosphodiesterase (Tdp1) inhibitors and characterization of furamidine (NSC 305831) as an inhibitor of Tdp1

机译:新型高通量电化学发光测定法用于鉴定人酪氨酰-DNA磷酸二酯酶(Tdp1)抑制剂和表征呋喃idine(NSC 305831)作为Tdp1抑制剂

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摘要

By enzymatically hydrolyzing the terminal phosphodiester bond at the 3′-ends of DNA breaks, tyrosyl-DNA phosphodiesterase (Tdp1) repairs topoisomerase-DNA covalent complexes and processes the DNA ends for DNA repair. To identify novel Tdp1 inhibitors, we developed a high-throughput assay that uses electrochemiluminescent (ECL) substrates. Subsequent to screening of 1981 compounds from the ‘diversity set’ of the NCI-Developmental Therapeutics Program, here we report that furamidine inhibits Tdp1 at low micromolar concentrations. Inhibition of Tdp1 by furamidine is effective both with single- and double-stranded substrates but is slightly stronger with the duplex DNA. Surface plasmon resonance studies show that furamidine binds both single- and double-stranded DNA, though more weakly with the single-stranded substrate DNA. Thus, the inhibition of Tdp1 activity could in part be due to the binding of furamidine to DNA. However, the inhibition of Tdp1 by furamidine is independent of the substrate DNA sequence. The kinetics of Tdp1 inhibition by furamidine was influenced by the drug to enzyme ratio and duration of the reaction. Comparison with related dications shows that furamidine inhibits Tdp1 more effectively than berenil, while pentamidine was inactive. Thus, furamidine represents the most potent Tdp1 inhibitor reported to date.
机译:通过酶促水解DNA断裂3'端的末端磷酸二酯键,酪氨酰DNA磷酸二酯酶(Tdp1)修复了拓扑异构酶-DNA共价复合物并处理了DNA末端以进行DNA修复。为了鉴定新型Tdp1抑制剂,我们开发了一种使用化学发光(ECL)底物的高通量检测方法。在从NCI-发展治疗计划的“多样性”中筛选出1981种化合物之后,在这里我们报道了呋喃idine啶在低微摩尔浓度下抑制Tdp1。呋喃idine对Tdp1的抑制作用对单链和双链底物均有效,但对双链DNA则略强。表面等离振子共振研究表明,呋喃idine啶与单链和双链DNA都结合,尽管单链底物DNA较弱。因此,Tdp1活性的抑制可能部分归因于呋喃to与DNA的结合。但是,呋喃啶对Tdp1的抑制作用与底物DNA序列无关。呋喃idine抑制Tdp1的动力学受药物与酶的比例和反应持续时间的影响。与相关药物的比较表明,呋喃咪定比苯甲腈更有效地抑制Tdp1,而喷他idine无活性。因此,呋喃idine啶代表迄今为止报道的最有效的Tdp1抑制剂。

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