灵敏的液相色谱-质谱(LC-MS)分析揭示了DNA甲基化和吉西他滨、其代谢物二氟脱氧尿嘧啶、脱氧尿嘧啶和RX-3117掺入DNA的新见解

R. Honeywell, Dzjemma Sarkisjan, I. Kathmann, M. H. Kristensen, G. Peters
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引用次数: 4

摘要

抗代谢物被并入DNA和RNA中,影响其功能。液相色谱-质谱联用(LC-MS-MS)可对正常核苷进行灵敏、选择性的分析。该方法适用于测定脱氧尿嘧啶、吉西他滨(二氟脱氧胞苷)及其代谢物二氟脱氧尿嘧啶(dFdU)和新型化合物氟环戊基胞嘧啶(RX3117)的掺入。在Phenomenex prodigy-3-ODS上用LC-MS-MS、梯度色谱法将DNA降解为脱氧核苷酸进行定量。在27个细胞系(白血病、结肠癌、卵巢癌、肺癌)中脱氧尿嘧啶dna错误结合的范围变化了9倍。在低叶酸条件下,脱氧尿苷增加了2.1倍。全甲基化(用% 5-甲基脱氧胞苷表示)在细胞系之间具有可比性(4.6-6.5%)。暴露于1 μM吉西他滨(4小时)的A2780细胞中,吉西他滨含量为3.6 pmol /μg,而AG6000细胞(脱氧胞苷激酶缺陷)中未发现掺入。然而,当A2780、AG6000或CCRF-CEM细胞暴露于100 μM dFdU时,我们发现其分别为吉西他滨、20.5、19.6和0.51 pmol吉西他滨/μg DNA。用环戊基胞嘧啶(一种ctp合成酶抑制剂)对CCRF-CEM细胞进行预孵育,使dFdU掺入增加了4倍。显然,dFdU独立于脱氧胞苷激酶被激活,并可能原位转化为dFdCMP。RX3117同时掺入DNA和RNA(分别为0.0037和0.00515 pmol/μg)。综上所述,我们建立了一种灵敏的方法来定量吉西他滨、脱氧尿嘧啶和RX-3117的掺入,结果显示dFdU作为母体化合物吉西他滨被掺入DNA。
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Sensitive liquid chromatography mass spectrometry (LC-MS) assay reveals novel insights on DNA methylation and incorporation of gemcitabine, its metabolite difluorodeoxyuridine, deoxyuridine, and RX-3117 into DNA
ABSTRACT Antimetabolites are incorporated into DNA and RNA, affecting their function. Liquid-chromatography-mass-spectrometry (LC-MS-MS) permits the sensitive, selective analysis of normal nucleosides. The method was adapted to measure the incorporation of deoxyuridine, gemcitabine (difluorodeoxycytidine), its metabolite difluorodeoxyuridine (dFdU), and the novel compound fluorocyclopentenylcytosine (RX3117). DNA was degraded to its deoxynucleotides for quantification by LC-MS-MS, gradient chromatography on a Phenomenex prodigy-3-ODS with positive ionization. The range of deoxyuridine DNA-mis-incorporation varied nine-fold in 27 cell lines (leukemia, colon, ovarian, lung cancer). At low-folate conditions a 2.1-fold increase in deoxyuridine was observed. Global methylation (given as % 5-methyl-deoxycytidine) was comparable between the cell lines (4.6–6.5%). Exposure of A2780 cells to 1 μM gemcitabine (4 hours) resulted in 3.6 pmol gemcitabine/μg DNA, but in AG6000 cells (deoxycytidine-kinase-deficient) no incorporation was found. However, when A2780, AG6000, or CCRF-CEM cells were exposed to 100 μM dFdU we found it as gemcitabine, 20.5, 19.6, and 0.51 pmol gemcitabine/μg DNA, respectively. Preincubation of CCRF-CEM cells with cyclopentenyl-cytosine (a CTP-synthetase inhibitor) increased dFdU incorporation four-fold. Apparently dFdU is activated independently of deoxycytidine-kinase and possibly converted in-situ to dFdCMP. RX3117 was incorporated into both DNA and RNA (0.0037 and 0.00515 pmol/μg, respectively). In summary, a sensitive method to quantify the incorporation of gemcitabine, deoxyuridine, and RX-3117 was developed, which revealed that dFdU was incorporated into DNA as the parent compound gemcitabine.
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