Radiation Metabolomics. 2. Dose- and Time-Dependent Urinary Excretion of Deaminated Purines and Pyrimidines after Sublethal Gamma-Radiation Exposure in Mice

嘌呤代谢 代谢组学 化学 次黄嘌呤 排泄 泌尿系统 代谢组 嘌呤 尿 黄嘌呤 代谢物 脱氧胞苷 毒理 生物化学 生物 内科学 医学 色谱法 癌症 吉西他滨
作者
John B. Tyburski,Andrew D. Patterson,Kristopher W. Krausz,Josef Slavík,Albert J. Fornace,Frank J. Gonzalez,Jeffrey R. Idle
出处
期刊:Radiation Research [Radiation Research Society]
卷期号:172 (1): 42-57 被引量:106
标识
DOI:10.1667/rr1703.1
摘要

Tyburski, J. B., Patterson, A. D., Krausz, K. W., Slavík, J., Fornace, A. J. Jr., Gonzalez, F. J. and Idle, J. R. Radiation Metabolomics. 2. Dose- and Time-Dependent Urinary Excretion of Deaminated Purines and Pyrimidines after Sublethal Gamma-Radiation Exposure in Mice. Radiat. Res. 172, 42-57 (2009).Gamma-radiation exposure of humans is a major public health concern as the threat of terrorism and potential hostile use of radiological devices increases worldwide. We report here the effects of sublethal γ-radiation exposure on the mouse urinary metabolome determined using ultra-performance liquid chromatography-coupled time-of-flight mass spectrometry-based metabolomics. Five urinary biomarkers of sublethal radiation exposure that were statistically significantly elevated during the first 24 h after exposure to doses ranging from 1 to 3 Gy were unequivocally identified by tandem mass spectrometry. These are deaminated purine and pyrimidine derivatives, namely, thymidine, 2′-deoxyuridine, 2′-deoxyxanthosine, xanthine and xanthosine. Furthermore, the aminopyrimidine 2′-deoxycytidine appeared to display reduced urinary excretion at 2 and 3 Gy. The elevated biomarkers displayed a time-dependent excretion, peaking in urine at 8–12 h but returning to baseline by 36 h after exposure. It is proposed that 2′-deoxyuridine and 2′-deoxyxanthosine arise as a result of γ irradiation by nitrosative deamination of 2′-deoxycytidine and 2′-deoxyguanosine, respectively, and that this further leads to increased synthesis of thymidine, xanthine and xanthosine. The urinary excretion of deaminated purines and pyrimidines, at the expense of aminopurines and aminopyrimidines, appears to form the core of the urinary radiation metabolomic signature of mice exposed to sublethal doses of ionizing radiation.

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