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阿糖胞苷诱导的冈崎片段模型的不稳定。

Cytarabine-induced destabilization of a model Okazaki fragment.

作者信息

Gmeiner W H, Skradis A, Pon R T, Liu J

机构信息

Eppley Institute and Department of Pharmaceutical Sciences, University of Nebraska Medical Center, Omaha, NE 68198-6805, USA.

出版信息

Nucleic Acids Res. 1998 May 15;26(10):2359-65. doi: 10.1093/nar/26.10.2359.

Abstract

Cytarabine is a potent anticancer drug that interferes with elongation of the lagging strand at the replication fork during DNA synthesis. The effects of cytarabine substitution on the structural and thermodynamic properties of a model Okazaki fragment were investigated using UV hyperchromicity and 1H NMR spectroscopy to determine how cytarabine alters the physicochemical properties of Okazaki fragments that are intermediates during DNA replication. Two model Okazaki fragments were prepared corresponding to a primary initiation site for DNA replication in the SV40 viral genome. One model Okazaki fragment consisted of five ribo- and seven deoxyribonucleotides on the hybrid strand, together with its complementary (DNA) strand. The second model Okazaki fragment was identical to the first with the exception of cytarabine substitution for deoxycytidine at the third DNA nucleotide of the hybrid strand. Thermodynamic parameters for the duplex to single strand transition for each model Okazaki fragment were calculated from the concentration dependence of the T m at 260 nm. Cytarabine significantly decreased the stability of this model Okazaki fragment, decreasing the melting temperature from 46.8 to 42.4 degrees C at a concentration of 1.33 x 10(-5) M. The free energy for the duplex to single strand transition was 1.2 kcal/mol less favorable for the cytarabine-substituted Okazaki fragment relative to the control at 37 degrees C. Analysis of the temperature dependence of the imino1H resonances for the two duplexes demonstrated that cytarabine specifically destabilized the DNA:DNA duplex portion of the model Okazaki fragment. These results are consistent with inhibition of lagging strand DNA synthesis by cytarabine substitution resulting from destabilization of the DNA:DNA duplex portion of Okazaki fragments in vivo .

摘要

阿糖胞苷是一种强效抗癌药物,它在DNA合成过程中干扰复制叉处滞后链的延伸。利用紫外增色效应和1H NMR光谱研究了阿糖胞苷取代对模型冈崎片段的结构和热力学性质的影响,以确定阿糖胞苷如何改变DNA复制过程中作为中间体的冈崎片段的物理化学性质。制备了两个与SV40病毒基因组中DNA复制的主要起始位点相对应的模型冈崎片段。一个模型冈崎片段在杂合链上由五个核糖核苷酸和七个脱氧核糖核苷酸及其互补(DNA)链组成。第二个模型冈崎片段与第一个相同,只是在杂合链的第三个DNA核苷酸处用阿糖胞苷取代了脱氧胞苷。根据260nm处Tm的浓度依赖性计算每个模型冈崎片段从双链到单链转变的热力学参数。阿糖胞苷显著降低了该模型冈崎片段的稳定性,在浓度为1.33×10^(-5) M时,熔解温度从46.8℃降至42.4℃。在37℃时,与对照相比,阿糖胞苷取代的冈崎片段从双链到单链转变的自由能不利1.2 kcal/mol。对两个双链体的亚氨基1H共振的温度依赖性分析表明,阿糖胞苷特异性地破坏了模型冈崎片段的DNA:DNA双链部分。这些结果与体内冈崎片段的DNA:DNA双链部分不稳定导致阿糖胞苷取代抑制滞后链DNA合成一致。

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