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Induction of somatic mutation and recombination by four inhibitors of eukaryotic topoisomerases assayed in the wing spot test of Drosophila melanogaster

机译:果蝇翼点试验中测定的四种真核拓扑异构酶抑制剂诱导的体细胞突变和重组

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摘要

Four inhibitors of eukaryotic topoisomerases were investigated for genotoxic effects in the wing spot test of Drosophila melanogaster. As a somatic mutation and recombination test (SMART) this assay assesses mitotic recombination and mutational events of various kinds. We studied camptothecin as a topoisomerase I inhibitor, as well as ellipticine as an intercalating inhibitor and teniposide and etoposide as two non-intercalating inhibitors of topoisomerase II. Wing spots were induced in flies trans-heterozygous for the recessive wing cell markers multiple wing hairs (mwh) and flare (flr3) as well as in flies heterozygous for mwh and the multiply inverted TM3 balancer chromosome. All four compounds proved significantly genotoxic in this test The spot induction frequencies formally standardized to the millimolar unit of exposure dose decreased in the order camptothecin > teniposide > ellipticine ≳ etoposide in the mwh/flr3 inversion-free genotype. In the mwh/TM3 genotype, in which mitotic crossing over is suppressed because of the inversion-heterozygosity, the observed spot frequencies were considerably reduced, but to different extents. In this genotype, spot induction by ellipticine was not statistically significant, and it was determined that >99% of the spots are due to mitotic recombination in mwh/flr3 flies. For the other compounds, spot induction in the inversion-heterozygous genotype was significant. The relative contribution of recombination to total spot induction in the inversion-free genotype was 88% for camptothecin. It was significantly lower for the two epipodophyllotoxins teniposide (71%) and etoposide (59%). Only suggestions can be proffered at present as to how these proportions could be related to the primary damage produced by the respective compounds on the chromosomes
机译:在果蝇的黑点试验中,研究了四种真核拓扑异构酶抑制剂的遗传毒性作用。作为一种体细胞突变和重组测试(SMART),该测定评估了各种有丝分裂重组和突变事件。我们研究了喜树碱作为拓扑异构酶I抑制剂,玫瑰树碱作为嵌入抑制剂以及替尼泊苷和依托泊苷作为两种拓扑异构酶II的非嵌入抑制剂。隐性翼细胞标记多翼毛(mwh)和耀斑(flr3)以及杂合子mwh和多重倒置的TM3平衡染色体上,在反杂合的果蝇中诱导出翼斑。在该测试中,所有四种化合物均被证明具有明显的遗传毒性。在mwh / flr3无逆转基因型中,正式标准化为暴露剂量毫摩尔单位的斑点诱导频率以喜树碱>替尼泊苷>玫瑰树碱≳依托泊苷的顺序降低。在mwh / TM3基因型中,由于倒位杂合性抑制了有丝分裂穿越,观察到的斑点频率显着降低,但程度不同。在这种基因型中,玫瑰树碱的斑点诱导在统计学上不显着,并且确定> 99%的斑点是由于mwh / flr3蝇中的有丝分裂重组所致。对于其他化合物,反转杂合基因型中的斑点诱导是显着的。喜树碱在无逆转基因型中重组对总点诱导的相对贡献为88%。两种表鬼臼毒素Teniposide(71%)和Etoposide(59%)的比例明显降低。目前只能提出有关这些比例与染色体上各个化合物所产生的主要损伤之间的关系的建议。

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