端粒相互作用因子影响海胆胚胎增殖率并诱导染色体不稳定。

Anti-cancer drug design Pub Date : 1999-08-01
E Izbicka, D Nishioka, V Marcell, E Raymond, K K Davidson, R A Lawrence, R T Wheelhouse, L H Hurley, R S Wu, D D Von Hoff
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引用次数: 0

摘要

阳离子卟啉与鸟嘌呤四重体(G4)端粒折叠相互作用,抑制人肿瘤细胞端粒酶活性。在这项研究中,我们进一步研究了卟啉和其他端粒和端粒酶相互作用剂对海胆胚胎增殖率和染色体稳定性的影响。我们研究了两种卟啉:(i) TMPyP4,一种有效的端粒酶抑制剂;(ii) TMPyP2, TMPyP4的异构体和低效端粒酶抑制剂azidothymine (AZT),逆转录酶抑制剂,端粒酶RNA (TAG6)的反义硫代寡核苷酸和对照乱序(ODN)。TMPyP4、AZT和TAG6(而不是TMPyP2或ODN)降低了细胞增殖率,增加了有丝分裂中的细胞百分比。TAG6和ODN的5'-荧光类似物证实了TAG6的核定位,而不是ODN。TMPyP4、AZT和TAG6诱导的后期无法分离的细长染色体的形成与端粒酶模板突变或显性负TRF2等位基因引起的表型非常相似。我们的数据表明,g4相互作用药物通过染色体不稳定发挥其抗增殖作用,并保证其进一步发展为有价值的抗癌工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Telomere-interactive agents affect proliferation rates and induce chromosomal destabilization in sea urchin embryos.

Cationic porphyrins, which interact with guanine quadruplex (G4) telomeric folds, inhibit telomerase activity in human tumor cells. In this study, we have further examined effects of porphyrins and other telomere- and telomerase-interactive agents on proliferation rates and chromosome stability in a novel in vivo model, developing sea urchin embryos. We studied two porphyrins: (i) TMPyP4, a potent telomerase inhibitor; and (ii) TMPyP2, an isomer of TMPyP4 and an inefficient telomerase inhibitor, azidothymine (AZT), the reverse transcriptase inhibitor, antisense phosphorothioate oligonucleotide to telomerase RNA (TAG6) and a control scrambled sequence (ODN). TMPyP4, AZT and TAG6 (but not TMPyP2 or ODN) decreased the rates of cell proliferation and increased the percentage of cells trapped in mitosis. Nuclear localization of TAG6, but not of ODN, was demonstrated with 5'-fluoresceinated analogs of TAG6 and ODN. Formation of elongated chromosomes incapable of separating in anaphase, induced by TMPyP4, AZT and TAG6, closely resembled phenotypes resulting from telomerase template mutation or dominant negative TRF2 allele. Our data suggest that G4-interactive agents exert their antiproliferative effects via chromosomal destabilization and warrant their further development as valuable anticancer tools.

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