首页> 美国卫生研究院文献>Cancer Science >Imbalance of Deoxyribonucleoside Triphosphates and DNA Double‐strand Breaks in Mouse Mammary Tumor FM3A Cells Treated in vitro with an Antineoplastic Tropolone Derivative
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Imbalance of Deoxyribonucleoside Triphosphates and DNA Double‐strand Breaks in Mouse Mammary Tumor FM3A Cells Treated in vitro with an Antineoplastic Tropolone Derivative

机译:抗肿瘤性托酚酮衍生物体外处理的小鼠乳腺肿瘤FM3A细胞中脱氧核糖核苷三磷酸的失衡和DNA双链断裂

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摘要

The mechanism by which α,α‐bis(2‐hydroxy‐6‐isopropyltropon‐3‐yl)‐4‐methoxytoluene (JCI‐3661) kills mouse mammary tumor FM3A (F28–7) cells was studied. When the cells were exposed to the drug at 3.7 μM, the intracellular dNTP pool became unbalanced because of decreases in dGTP and dATP and an increase in dTTP. The pattern of the dNTP imbalance was the same as that caused by hydroxyurea. When JCI‐3661 was added to the culture medium, mature DNA strands broke, giving fragments of 100–200 kilobase pairs long as found by orthogonal‐field‐alternation gel electrophoresis. DNA strand breaks, detected by this technique, were observed in the cells at 12 h after the addition. The beginning of cell death was observed at about 14 h (trypan blue staining) or at about 12 h (colony‐forming ability) after cultivation Breaks in the single and double strands of DNA, as measured by alkaline and neutral filter elution assay, became evident 24 h after treatment with 3.7 μM JCI‐3661. Comparison of the ratio of single‐ and double‐strand breaks caused by JCI‐3661 to that following radiation suggested that JCI‐3661 broke only double strands. Cycloheximide inhibited both the breakage of double strands and the cell death caused by JCI‐3661. JCI‐3661 decreased DNA synthesis more than RNA or protein synthesis. The breaks in double strands of DNA were probably important in the cell death caused by JCI‐3661.
机译:研究了α,α-双(2-羟基-6-异丙丙基肌醇-3-基)-4-甲氧基甲苯(JCI-3661)杀死小鼠乳腺肿瘤FM3A(F28-7)细胞的机制。当细胞以3.7μM暴露于药物时,由于dGTP和dATP的减少以及dTTP的增加,细胞内dNTP库变得不平衡。 dNTP失衡的模式与羟基脲引起的失衡相同。当将JCI-3661添加到培养基中时,成熟的DNA链断裂,产生100-200千碱基对的片段,通过正交场交替凝胶电泳发现该片段长。添加后12小时,在细胞中观察到通过该技术检测到的DNA链断裂。培养后约14 h(锥虫蓝染色)或约12 h(菌落形成能力)观察到细胞死亡的开始,通过碱性和中性滤膜洗脱测定法测定的单链和双链DNA断裂3.7μMJCI‐3661处理后24小时内明显可见。通过比较由JCI‐3661引起的单链断裂和双链断裂与随后的辐射的比率,可以看出JCI‐3661仅断裂了双链。 Cycloheximide抑制JCI‐3661引起的双链断裂和细胞死亡。 JCI‐3661减少的DNA合成比RNA或蛋白质合成更多。 DNA双链断裂可能是由JCI‐3661引起的细胞死亡的重要原因。

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