Department of Oncology, University Children's Hospital Zurich, Zurich, Switzerland.
Mol Cancer Ther. 2010 Jan;9(1):167-79. doi: 10.1158/1535-7163.MCT-09-0586. Epub 2010 Jan 6.
We investigated here the effects of S2T1-6OTD, a novel telomestatin derivative that is synthesized to target G-quadruplex-forming DNA sequences, on a representative panel of human medulloblastoma (MB) and atypical teratoid/rhabdoid (AT/RT) childhood brain cancer cell lines. S2T1-6OTD proved to be a potent c-Myc inhibitor through its high-affinity physical interaction with the G-quadruplex structure in the c-Myc promoter. Treatment with S2T1-6OTD reduced the mRNA and protein expressions of c-Myc and hTERT, which is transcriptionally regulated by c-Myc, and decreased the activities of both genes. In remarkable contrast to control cells, short-term (72-hour) treatment with S2T1-6OTD resulted in a dose- and time-dependent antiproliferative effect in all MB and AT/RT brain tumor cell lines tested (IC(50), 0.25-0.39 micromol/L). Under conditions where inhibition of both proliferation and c-Myc activity was observed, S2T1-6OTD treatment decreased the protein expression of the cell cycle activator cyclin-dependent kinase 2 and induced cell cycle arrest. Long-term treatment (5 weeks) with nontoxic concentrations of S2T1-6OTD resulted in a time-dependent (mainly c-Myc-dependent) telomere shortening. This was accompanied by cell growth arrest starting on day 28 followed by cell senescence and induction of apoptosis on day 35 in all of the five cell lines investigated. On in vivo animal testing, S2T1-6OTD may well represent a novel therapeutic strategy for childhood brain tumors.
我们研究了一种新型端粒酶抑制剂 S2T1-6OTD 的作用,该抑制剂是为靶向 G-四链体形成的 DNA 序列而合成的。该抑制剂对一组代表性的人髓母细胞瘤(MB)和非典型畸胎瘤/横纹肌样瘤(AT/RT)儿童脑癌细胞系进行了研究。S2T1-6OTD 通过与 c-Myc 启动子中的 G-四链体结构的高亲和力物理相互作用,被证明是一种有效的 c-Myc 抑制剂。用 S2T1-6OTD 处理会降低 c-Myc 和 hTERT 的 mRNA 和蛋白表达,因为 c-Myc 可转录调控 hTERT。此外,该抑制剂还降低了这两个基因的活性。与对照细胞形成鲜明对比的是,在所有 MB 和 AT/RT 脑肿瘤细胞系中,S2T1-6OTD 短期(72 小时)处理会导致剂量和时间依赖性的增殖抑制作用(IC50 为 0.25-0.39 μmol/L)。在观察到抑制增殖和 c-Myc 活性的条件下,S2T1-6OTD 处理会降低细胞周期蛋白依赖性激酶 2 的蛋白表达并诱导细胞周期停滞。用非毒性浓度的 S2T1-6OTD 进行长期(5 周)处理会导致端粒随时间(主要是 c-Myc 依赖性)缩短。在所有五种被研究的细胞系中,这伴随着从第 28 天开始的细胞生长停滞,随后在第 35 天出现细胞衰老和诱导细胞凋亡。在体内动物试验中,S2T1-6OTD 很可能代表一种针对儿童脑肿瘤的新型治疗策略。