首页> 外文期刊>Biochemical Pharmacology >Induction of DNA damage, inhibition of DNA synthesis, and suppression of c-myc expression by the topoisomerase I inhibitor, camptothecin, in MCF-7 human breast tumor cells.
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Induction of DNA damage, inhibition of DNA synthesis, and suppression of c-myc expression by the topoisomerase I inhibitor, camptothecin, in MCF-7 human breast tumor cells.

机译:在MCF-7人乳腺肿瘤细胞中,拓扑异构酶I抑制剂喜树碱可诱导DNA损伤,抑制DNA合成并抑制c-myc表达。

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摘要

Previous work from this laboratory has demonstrated an association between the suppression of c-myc expression and the antiproliferative activity of both topoisomerase II inhibitors and ionizing radiation in MCF-7 breast tumor cells. These findings suggested that suppression of c-myc expression could be related to the induction of DNA damage in this cell line. The present studies were designed to determine whether the inhibition of topoisomerase I (and the consequent induction of DNA strand breaks) would also result in the suppression of c-myc expression. At camptothecin concentrations of 1 microM and below, there was no detectable damage (single- or double-strand breaks) in bulk DNA or suppression of c-myc expression. At camptothecin concentrations of 5, 10, and 25 microM, where suppression of c-myc expression was observed, strand breaks in bulk DNA were also detected. These findings are consistent with the idea that suppression of c-myc expression could be a component of the DNA damage response pathway in MCF-7 breast tumor cells. In contrast to the absence of detectable damage to bulk DNA or suppression of c-myc expression at the lower concentrations of camptothecin, DNA synthesis was inhibited over the entire range of drug concentrations and demonstrated a strong correspondence with growth inhibition. These observations support the concept that growth inhibition of MCF-7 cells by camptothecin is closely related to the early suppression of DNA synthesis.
机译:该实验室的先前工作表明,c-myc表达的抑制与拓扑异构酶II抑制剂的抗增殖活性和MCF-7乳腺癌细胞中的电离辐射之间存在关联。这些发现表明,c-myc表达的抑制可能与该细胞系中DNA损伤的诱导有关。本研究旨在确定对拓扑异构酶I的抑制(以及随后对DNA链断裂的诱导)是否也会导致c-myc表达的抑制。在喜树碱浓度为1 microM及以下时,本体DNA中没有可检测到的损伤(单链或双链断裂)或c-myc表达的抑制。在喜树碱浓度为5、10和25 microM的情况下,观察到c-myc表达受到抑制,在散装DNA中也检测到链断裂。这些发现与c-myc表达的抑制可能是MCF-7乳腺肿瘤细胞中DNA损伤反应途径的一个组成部分相一致。与在较低的喜树碱浓度下未检测到对整体DNA的可检测破坏或c-myc表达的抑制相比,DNA合成在整个药物浓度范围内均受到抑制,并与生长抑制作用密切相关。这些观察结果支持喜树碱抑制MCF-7细胞生长与DNA合成的早期抑制密切相关的概念。

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