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使用优化的DNA聚合酶延伸测定法,吉西他滨三磷酸对脱氧核苷酸测量的干扰。

Interference of gemcitabine triphosphate with the measurements of deoxynucleotides using an optimized DNA polymerase elongation assay.

作者信息

Smid K, Van Moorsel C J, Noordhuis P, Voorn D A, Peters G J

机构信息

Department of Medical Oncology, Vrije Universiteit Medical Centre (VUMC), PO Box 7057, 1007 MB Amsterdam, The Netherlands.

出版信息

Int J Oncol. 2001 Jul;19(1):157-62.

Abstract

The main mechanism of action of the anticancer drug gemcitabine is assumed to be incorporation of its triphosphate (dFdCTP) into DNA, resulting in inhibition of DNA polymerization, inhibition of DNA synthesis and repair. Another mechanism is inhibition of ribonucleotide reductase leading to imbalance in the deoxyribonucleotide (dNTP) pools. One assay to measure dNTP pools is based on oligonucleotide elongation mediated by DNA polymerase. Since the latter may be affected by dFdCTP, we studied the effect of 0.1-600 pmol dFdCTP on this assay; 10 pmol and more dFdCTP significantly increased the average dpm of the blank (absence of other dNTP) and that of the calibration line of dATP (1.4-1.6-fold); 0.1 pmol and more increased that of the standard dGTP curve significantly (1.1-1.8-fold); 10-75 pmol decreased that of dCTP while 75 and 100 pmol significantly increased that of dCTP (1.3-fold); 50 pmol significantly increased that of dTTP (1.3-1.5-fold). For dATP, dGTP and dTTP, a saturation was reached at 100 pmol dFdCTP, but not yet for dCTP. To minimize these effects, we added an excess of 200 pmol dFdCTP to all samples and calibration lines when measuring dNTP levels of gemcitabine treated samples. In this way the effects of gemcitabine on dNTP levels were studied in human A2780 ovarian, HT29 colon, K562 myelogenous leukemia, H322 non-small cell lung cancer cell lines and the murine lung cancer cell line Lewis Lung. In all cell lines, intrinsic dTTP pools (3-77 pmol/106 cells) were the highest, followed by dATP (1.5-31), dCTP (0.7-27) and (nd-14) dGTP. Exposure to 1 and 10 microM gemcitabine for 4-h concentration dependently decreased dATP 3-10-fold and dGTP to undetectable levels, but dCTP at most 3-fold, while dTTP increased. In conclusion, dFdCTP affects dNTP measurements with the DNA polymerase elongation assay, but its effect could be controlled by addition of similar amounts of dFdCTP to each assay.

摘要

抗癌药物吉西他滨的主要作用机制被认为是其三磷酸酯(dFdCTP)掺入DNA,导致DNA聚合抑制、DNA合成和修复抑制。另一种机制是抑制核糖核苷酸还原酶,导致脱氧核苷酸(dNTP)池失衡。一种测量dNTP池的测定方法基于DNA聚合酶介导的寡核苷酸延伸。由于后者可能受dFdCTP影响,我们研究了0.1 - 600 pmol dFdCTP对该测定的影响;10 pmol及以上的dFdCTP显著增加了空白(无其他dNTP)的平均dpm以及dATP校准曲线的平均dpm(1.4 - 1.6倍);0.1 pmol及以上显著增加了标准dGTP曲线的平均dpm(1.1 - 1.8倍);10 - 75 pmol降低了dCTP的平均dpm,而75和100 pmol显著增加了dCTP的平均dpm(1.3倍);50 pmol显著增加了dTTP的平均dpm(1.3 - 1.5倍)。对于dATP、dGTP和dTTP,在100 pmol dFdCTP时达到饱和,但dCTP尚未达到饱和。为了将这些影响降至最低,在测量吉西他滨处理样品的dNTP水平时,我们向所有样品和校准曲线中添加了过量的200 pmol dFdCTP。通过这种方式,研究了吉西他滨对人A2780卵巢癌细胞系、HT29结肠癌细胞系、K562髓性白血病细胞系、H322非小细胞肺癌细胞系以及小鼠肺癌细胞系Lewis Lung中dNTP水平的影响。在所有细胞系中,内源性dTTP池(3 - 77 pmol/106细胞)最高,其次是dATP(1.5 - 31)、dCTP(0.7 - 27)和(未检测到 - 14)dGTP。暴露于1和10 microM吉西他滨4小时后,dATP浓度依赖性降低3 - 10倍,dGTP降至检测不到的水平,但dCTP最多降低3倍,而dTTP增加。总之,dFdCTP会影响DNA聚合酶延伸测定中的dNTP测量,但通过在每次测定中添加等量的dFdCTP可以控制其影响。

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