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双链 DNA 中高度氧化的鸟嘌呤损伤鸟嘌呤脒基脲的热力学后果。

Thermodynamic consequences of the hyperoxidized guanine lesion guanidinohydantoin in duplex DNA.

机构信息

Department of Chemistry, Brown University, Providence, RI 02912, USA.

出版信息

Chem Res Toxicol. 2012 Aug 20;25(8):1732-9. doi: 10.1021/tx300190a. Epub 2012 Jul 23.

Abstract

Guanidinohydantoin (Gh) is a hyperoxidized DNA lesion produced by oxidation of 8-oxo-7,8-dihydroguanine (8-oxoG). Previous work has shown that Gh is potently mutagenic in both in vitro and in vivo coding for G → T and G → C transversion mutations. In this work, analysis by circular dichroism shows that the Gh lesion does not significantly alter the global structure of a 15-mer duplex and that the DNA remains in the B-form. However, we find that Gh causes a large decrease in the thermal stability, decreasing the duplex melting temperature by ~17 °C relative to an unmodified duplex control. Using optical melting analysis and differential scanning calorimetry, the thermodynamic parameters describing duplex melting were also determined. We find that the Gh lesion causes a dramatic decrease in the enthalpic stability of the duplex. This enthalpic destabilization is somewhat tempered by entropic stabilization; yet, Gh results in an overall decrease in thermodynamic stability of the duplex relative to a control that lacks DNA damage, with a ΔΔG° of -7 kcal/mol. These results contribute to our understanding of the consequences of hyperoxidation of G and provide insight into how the thermal and thermodynamic destabilization caused by Gh may influence replication and/or repair of the lesion.

摘要

胍基乙内酰脲(Gh)是由 8-氧代-7,8-二氢鸟嘌呤(8-oxoG)氧化产生的超氧化 DNA 损伤。以前的工作表明,Gh 在体外和体内都具有很强的诱变作用,可导致 G→T 和 G→C 颠换突变。在这项工作中,圆二色性分析表明,Gh 损伤不会显著改变 15 个碱基对双螺旋的整体结构,并且 DNA 仍保持 B 型。然而,我们发现 Gh 导致双链体热稳定性大大降低,与未修饰的双链体对照相比,双链体熔解温度降低了约 17°C。使用光学熔解分析和差示扫描量热法,还确定了描述双链体熔解的热力学参数。我们发现 Gh 损伤导致双链体的焓稳定性显著降低。这种焓不稳定被熵稳定部分缓和;然而,与缺乏 DNA 损伤的对照相比,Gh 导致双链体的热力学稳定性总体下降,ΔΔG°为-7 kcal/mol。这些结果有助于我们理解 G 的超氧化的后果,并深入了解 Gh 引起的热和热力学不稳定如何影响损伤的复制和/或修复。

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