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一种喹喔啉衍生物的鉴定,该衍生物是一种有效的端粒酶抑制剂,可导致人类癌细胞发生细胞衰老。

Identification of a quinoxaline derivative that is a potent telomerase inhibitor leading to cellular senescence of human cancer cells.

作者信息

Kim Jun Hyun, Kim Joo Hee, Lee Gun Eui, Kim Sang Woong, Chung In Kwon

机构信息

DNA Link, Inc, Milk Building, Yonsei University, Seoul 120-110, Korea.

出版信息

Biochem J. 2003 Jul 15;373(Pt 2):523-9. doi: 10.1042/BJ20030363.

Abstract

Telomere maintenance is essential for the continued proliferation of dividing cells, and is implicated in chromosome stability and cell immortalization. Telomerase activity allows cells to maintain their telomeric DNA and contributes to the indefinite replicative capacity of cancer cells. Telomerase is expressed in most cancer cells, but not in normal somatic cells, suggesting that telomerase is an attractive target for cancer chemotherapy. Here we screened a chemical library for inhibition of human telomerase, and identified 2,3,7-trichloro-5-nitroquinoxaline (TNQX) as a potent inhibitor. TNQX showed a potent inhibitory effect, with 50% inhibition at approximately 1.4 microM, and did not inhibit DNA and RNA polymerases, including retroviral reverse trancriptase. A series of enzyme kinetic experiments suggested that TNQX is a mixed-type non-competitive inhibitor, with an inhibitor-binding site distinct from the binding sites for the telomeric substrate (TS) primer and the dNTPs. Long-term cultivation of the MCF7 cell line with a drug concentration that did not cause acute cytotoxicity resulted in progressive telomere erosion followed by an increased incidence of chromosome abnormalities and induction of the senescence phenotype. The results presented here indicate that TNQX is a highly potent and selective anti-telomerase agent with good potential for further development as a promising anti-cancer agent.

摘要

端粒维持对于分裂细胞的持续增殖至关重要,并且与染色体稳定性和细胞永生化有关。端粒酶活性使细胞能够维持其端粒DNA,并有助于癌细胞的无限复制能力。端粒酶在大多数癌细胞中表达,但在正常体细胞中不表达,这表明端粒酶是癌症化疗的一个有吸引力的靶点。在这里,我们筛选了一个化学文库以寻找人端粒酶抑制剂,并鉴定出2,3,7-三氯-5-硝基喹喔啉(TNQX)是一种有效的抑制剂。TNQX显示出强大的抑制作用,在约1.4微摩尔时具有50%的抑制率,并且不抑制包括逆转录病毒逆转录酶在内的DNA和RNA聚合酶。一系列酶动力学实验表明,TNQX是一种混合型非竞争性抑制剂,其抑制剂结合位点与端粒底物(TS)引物和dNTPs的结合位点不同。用不会引起急性细胞毒性的药物浓度对MCF7细胞系进行长期培养,导致端粒逐渐侵蚀,随后染色体异常发生率增加并诱导衰老表型。此处呈现的结果表明,TNQX是一种高效且选择性的抗端粒酶药物,具有作为有前景的抗癌药物进一步开发的良好潜力。

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本文引用的文献

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