首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Characteristic effect of an anticancer dinuclear platinum(II) complex on the higher-order structure of DNA
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Characteristic effect of an anticancer dinuclear platinum(II) complex on the higher-order structure of DNA

机译:抗癌双核铂(II)配合物对DNA高阶结构的特征作用

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摘要

It is known that a 1,2,3-triazolato-bridged dinuclear platinum(II) complex, [{cis-Pt(NH_3)_2}_2(μ-OH)(μ-1,2,3-ta-N ~1,N ~2)](NO_3)_2 (AMTA), shows high in vitro cytotoxicity against several human tumor cell lines and circumvents cross-resistance to cisplatin. In the present study, we examined a dose- and time-dependent effect of AMTA on the higher-order structure of a large DNA, T4 phage DNA (166 kbp), by adapting single-molecule observation with fluorescence microscopy. It was found that AMTA induces the shrinking of DNA into a compact state with a much higher potency than cisplatin. From a quantitative analysis of the Brownian motion of individual DNA molecules in solution, it became clear that the density of a DNA segment in the compact state is about 2,000 times greater than that in the absence of AMTA. Circular dichroism spectra suggested that AMTA causes a transition from the B to the C form in the secondary structure of DNA, which is characterized by fast and slow processes. Electrophoretic measurements indicated that the binding of AMTA to supercoiled DNA induces unwinding of the double helix. Our results indicate that AMTA acts on DNA through both electrostatic interaction and coordination binding; the former causes a fast change in the secondary structure from the B to the C form, whereas the latter promotes shrinking in the higher-order structure as a relatively slow kinetic process. The shrinking effect of AMTA on DNA is attributable to the possible increase in the number of bridges along a DNA molecule. It is concluded that AMTA interacts with DNA in a manner markedly different from that of cisplatin.
机译:已知1,2,3-三唑桥连双核铂(II)络合物[{cis-Pt(NH_3)_2} _2(μ-OH)(μ-1,2,3-ta-N〜 1,N〜2)](NO_3)_2(AMTA)对多种人类肿瘤细胞系表现出很高的体外细胞毒性,并规避了对顺铂的交叉耐药性。在本研究中,我们通过采用荧光显微镜的单分子观察,研究了AMTA对大DNA T4噬菌体DNA(166 kbp)高阶结构的剂量和时间依赖性。已经发现,AMTA以比顺铂高得多的效力诱导DNA收缩成致密状态。通过对溶液中单个DNA分子的布朗运动的定量分析,可以清楚地看到,紧密状态下DNA片段的密度是不存在AMTA时的2,000倍。圆二色性光谱表明,AMTA导致DNA二级结构从B转变为C形式,其特征是快速和缓慢的过程。电泳测量表明,AMTA与超螺旋DNA的结合可诱导双螺旋的展开。我们的结果表明AMTA通过静电相互作用和配位结合作用于DNA。前者引起二级结构从B到C形式的快速变化,而后者由于相对缓慢的动力学过程而促进了高级结构的收缩。 AMTA对DNA的收缩作用可归因于沿着DNA分子的桥数可能增加。结论是AMTA与DNA的相互作用方式与顺铂明显不同。

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