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Characterization of activation energy distribution for ultraviolet irradiation of T-rich oligonucleotide using high-performance liquid chromatography electrospray ionization mass spectrometry tandem mass spectrometry

机译:高效液相色谱电喷雾电离质谱串联质谱表征富T寡核苷酸紫外线照射的活化能分布

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摘要

Exposure to solar UV radiation gives rise to mutations that may lead to skin cancer of human being. Series of experiments were carried out in order to reveal activation energy distribution of DNA mutation caused by UV radiation. The T-rich oligonucleotides were exposed to UV radiation with increasing intensity for different durations. Photoproducts of T-rich oligonucleotide were investigated using ion-pair reversed-phase high-performance liquid chromatography/tandem electrospray ionization mass spectrometry (IP-RP-HPLC/ESI-MS) at room temperature. Two photoproducts of T-rich oligonucleotide were cis-syn cyclobutane pyrimidine dimmer (T[c,s]T) and the pyrimidine(6,4)pyrimidone product (T[6,4]T). Activation energy distribution of DNA mutation was calculated using a commercial kinetics analysis programs by Robert L. Braun and Alan K. Burnham , Lawrance Livermore International Laboratory (version 2.4.1). To use the software for deriving the kinetics parameters, the factor T (temperature) in the software was substituted with k1R, in which k1 is a factor, R is radiation intensity. The activation energy derived ranges from 55 to 110kJ mol–1. By the same software, those kinetics parameters were extrapolated to natural UV radiation process to predict DNA damage degree without the DNA repair process.
机译:暴露在太阳紫外线辐射下会引起可能导致人类皮肤癌的突变。为了揭示由紫外线辐射引起的DNA突变的活化能分布,进行了一系列实验。将富含T的寡核苷酸以增加的强度暴露于UV辐射不同的持续时间。在室温下,使用离子对反相高效液相色谱/串联电喷雾电离质谱(IP-RP-HPLC / ESI-MS)研究了富含T的寡核苷酸的光产物。富含T的寡核苷酸的两个光产物是顺式-顺式环丁烷嘧啶二聚体(T [c,s] T)和嘧啶(6,4)嘧啶酮产物(T [6,4] T)。 Lawrance Livermore国际实验室的Robert L. Braun和Alan K.Burnham使用商业动力学分析程序计算了DNA突变的活化能分布(2.4.1版)。为了使用该软件得出动力学参数,用k1R代替了软件中的因子T(温度),其中k1是因子,R是辐射强度。得出的活化能范围为55至110kJ mol-1。通过相同的软件,将那些动力学参数外推至自然紫外线辐射过程,以预测没有DNA修复过程的DNA损伤程度。

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