Biophysics Division, Saha Institute of Nuclear Physics , Block-AF, Sector- I, Bidhan Nagar, Kolkata 700064, India.
Biochemistry. 2013 Jun 18;52(24):4127-37. doi: 10.1021/bi400080t. Epub 2013 Jun 4.
Polyguanine sequences fold into G-quadruplex structures in the presence of monovalent cations. It is accepted that the telomeric DNA region consists of G-quadruplex structure. There are reports that potential G-quadruplex forming motifs are also present in the promoter region of some proto-oncogenes such as c-myc, c-kit, KRAS, etc. Small molecules with the potential to stabilize the telomeric DNA quadruplex have emerged as potential anticancer agents. We have studied the interaction of ellipticine, a putative anticancer agent from a plant source, with a human telomeric DNA sequence (H24). Spectroscopic and calorimetric studies indicate that the association of ellipticine with H24 is an entropically driven phenomenon with a 2:3 (H24:ellipticine) stoichiometry. Though ellipticine binding does not induce any major structural perturbation in H24, the association leads to formation of a complex with enhanced thermal stability. An assay with the telomerase repeat amplification protocol shows that ellipticine inhibits telomerase activity in MDAMB-231 breast cancer cell line extracts. This is the first report of the quadruplex binding ability of ellipticine. Using the results, we propose that along with DNA intercalation and/or topoisomerase II inhibition, interaction with the telomeric DNA region and the resultant inhibition of telomerase activity might be an additional mode of action for its anticancer property.
聚鸟嘌呤序列在单价阳离子存在下折叠成 G-四链体结构。人们普遍认为端粒 DNA 区域由 G-四链体结构组成。有报道称,一些原癌基因(如 c-myc、c-kit、KRAS 等)的启动子区域也存在潜在的 G-四链体形成基序。具有稳定端粒 DNA 四链体潜力的小分子已成为潜在的抗癌药物。我们研究了一种来自植物来源的假定抗癌药物椭圆黄素与人类端粒 DNA 序列(H24)的相互作用。光谱和量热研究表明,椭圆黄素与 H24 的缔合是一个熵驱动的现象,具有 2:3(H24:椭圆黄素)的化学计量比。尽管椭圆黄素结合不会引起 H24 发生任何主要结构扰动,但这种结合导致形成具有增强热稳定性的复合物。使用端粒酶重复扩增协议的测定表明,椭圆黄素抑制 MDAMB-231 乳腺癌细胞系提取物中的端粒酶活性。这是椭圆黄素结合四链体能力的首次报道。利用这些结果,我们提出,除了 DNA 嵌入和/或拓扑异构酶 II 抑制外,与端粒 DNA 区域的相互作用以及由此抑制端粒酶活性可能是其抗癌特性的另一种作用模式。