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A molecular model for drug binding to tandem repeats of telomeric G-quadruplexes

机译:用于串联聚集型串联重复的药物结合的分子模型

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The extreme 3'-ends of human telomeres consist of 150-250 nucleotides of single-stranded DNA sequence together with associated proteins. Small-molecule ligands can compete with these proteins and induce a conformational change in the DNA to a four-stranded quadruplex arrangement, which is also no longer a substrate for the telomerase enzyme. The modified telomere ends provide signals to the DNA-damage-response system and trigger senescence and apoptosis. Experimental structural data are available on such quadruplex complexes comprising up to four telomeric DNA repeats, but not on longer systems that are more directly relevant to the single-stranded overhang in human cells. The present paper reports on a molecular modelling Study that uses Molecular Dynamics simulation methods to build dimer and tetramer quadruplex repeats. These incorporate ligand-binding sites and are models for overhang-ligand complexes.
机译:人端粒的极端3末端由单链DNA序列的150-250个核苷酸与相关蛋白组成。小分子配体可以与这些蛋白质竞争并诱导DNA中的构象变化,以四链四边形布置,这也不再是端粒酶酶的基材。修饰的端粒末端为DNA损伤响应系统提供信号并引发衰老和凋亡。实验结构数据可在这种四边形复合物上,包含最多四种端粒体DNA重复,但不在更长的系统上与人细胞中单链悬垂更直接相关。本文报告了一种利用分子动力学模拟方法构建二聚体和四聚体QuadRuple重复的分子建模研究。这些掺入配体结合位点,是覆盖配体配合物的模型。

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