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新型萘醌对荧光素酶的抑制作用。

Luciferase inhibition by a novel naphthoquinone.

机构信息

Department of Chemistry and Biochemistry, The University of Tulsa, Tulsa, OK 74104, USA.

出版信息

J Photochem Photobiol B. 2012 Feb 6;107:55-64. doi: 10.1016/j.jphotobiol.2011.11.008. Epub 2011 Dec 8.

Abstract

The novel naphthoquinone 12,13-dihydro-N-methyl-6,11,13-trioxo-5H-benzo[4,5]cyclohepta[1,2-b]naphthalen-5,12-imine (hereafter called TU100) was created as a potential chemotherapeutic agent. Previous work showed it is an irreversible inhibitor of type I and II topoisomerases that alkylates specific enzyme thiols. While analyzing the effect of TU100 on cancer cells, we discovered it is a potent inhibitor of luciferase derived from both Photinus pyralis (fireflies) and Renilla reniformis (sea pansy). Pre-incubation experiments showed that TU100 does not irreversibly inactivate luciferase, indicating its mechanism is different from that observed with topoisomerases. Firefly luciferase generates light using ATP and luciferin as substrates (bioluminescence). An examination of TU100 inhibition at varying substrate concentrations revealed the drug is uncompetitive with respect to ATP and competitive with respect to luciferin. The TU100 binding constant (K(I)) is 2.5±0.7 μM as determined by Dixon plot analysis. These data suggest TU100 specifically binds the luciferase-ATP complex and prevents its interaction with luciferin. Given the novel structure of TU100, unique mechanism of action, and ability to target luciferase from different species, these results identify TU100 as an important new reagent for investigating and regulating bioluminescent enzymes.

摘要

新型萘醌 12,13-二氢-N-甲基-6,11,13-三氧代-5H-苯并[4,5]环庚[1,2-b]萘并[5,12-e]亚胺(简称 TU100)被开发为一种潜在的化疗药物。先前的工作表明,它是一种不可逆的 I 型和 II 型拓扑异构酶抑制剂,可使特定酶的巯基烷基化。在分析 TU100 对癌细胞的影响时,我们发现它是萤火虫(Photinus pyralis)和海葵(Renilla reniformis)来源的荧光素酶的有效抑制剂。预孵育实验表明,TU100 不会使荧光素酶不可逆失活,表明其作用机制与拓扑异构酶不同。萤火虫荧光素酶利用 ATP 和荧光素作为底物(生物发光)产生光。在不同底物浓度下对 TU100 抑制作用的研究表明,该药物对 ATP 表现为非竞争性抑制,对荧光素表现为竞争性抑制。通过 Dixon 作图分析确定 TU100 的结合常数(K(I))为 2.5±0.7 μM。这些数据表明 TU100 特异性结合荧光素酶-ATP 复合物并阻止其与荧光素的相互作用。鉴于 TU100 的新颖结构、独特的作用机制以及靶向来自不同物种的荧光素酶的能力,这些结果表明 TU100 是研究和调节生物发光酶的重要新试剂。

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