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Highly sensitive electrochemiluminescence displacement method for the study of DNA/small molecule binding interactions

机译:用于DNA /小分子结合相互作用研究的高灵敏化学发光位移法

摘要

Non-covalent binding interactions of small molecules with DNA play important roles in regulating gene expression and gene function. In this work, a highly sensitive electrochemiluminescence (ECL) displacement method has been developed to investigate such interactions, particularly for weak DNA binders. This ECL method relies on a double-stranded DNA film deposited on an indium tin oxide electrode (ITO) surface by layer-by-layer self-assembly. A DNA intercalator, [Ru(bpy)(2)(dppz)](2+) (bpy = 2,2'-bipyridine, dppz = dipyrido[3,2-a:2'3'-c]phenazine), is employed as the ECL signal indicator. If a test compound competes with the indicator for the same binding sites in DNA, it would displace the indicator from the film and reduce ECL signal. The new method was validated by measuring five well-known DNA-binding organic molecules including quinacrine, H33258, thiazole orange, ethidium bromide and 4,6-diamidine-2-phenylindole dihydrochloride. Due to high ECL sensitivity, only 0.4 mu mol L(-1) [Ru(bpy)(2)(dppz)](2+) was needed in the ECL displacement measurement, which is about 75-fold less than the concentration in the voltammetric measurement. The lowered concentration permitted direct measurement of IC(50) values of eight hydroxylated polycyclic aromatic hydrocarbons in their ECL displacement curves and subsequent calculation of their binding constants with DNA. The ECL displacement method is particularly useful for investigating weak DNA binders with limited aqueous solubility. (C) 2010 Elsevier B.V. All rights reserved.
机译:小分子与DNA的非共价结合相互作用在调节基因表达和基因功能中起重要作用。在这项工作中,已开发出一种高灵敏度的电化学发光(ECL)置换方法来研究这种相互作用,尤其是对于弱DNA结合剂而言。此ECL方法依赖于通过逐层自组装在铟锡氧化物电极(ITO)表面上沉积的双链DNA膜。 DNA嵌入剂[Ru(bpy)(2)(dppz)](2+)(bpy = 2,2'-联吡啶,dppz =双吡啶[3,2-a:2'3'-c]吩嗪),被用作ECL信号指示器。如果测试化合物与指示剂竞争DNA中相同的结合位点,则它将使指示剂从胶片上移位并降低ECL信号。该新方法通过测量五个众所周知的与DNA结合的有机分子而得到验证,这些有机分子包括奎纳克林,H33258,噻唑橙,溴化乙锭和4,6-二dia二-2-苯基吲哚二盐酸盐。由于ECL灵敏度高,因此在ECL位移测量中仅需要0.4μmol L(-1)[Ru(bpy)(2)(dppz)](2+),比浓度低约75倍。伏安测量。降低的浓度允许直接测量八种羟基化多环芳烃在其ECL置换曲线中的IC(50)值,并随后计算其与DNA的结合常数。 ECL置换方法对于研究水溶性有限的弱DNA结合剂特别有用。 (C)2010 Elsevier B.V.保留所有权利。

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