首页> 外文期刊>Journal of enzyme inhibition and medicinal chemistry. >Targeting human DNA polymerase alpha for the inhibition of keratinocyte proliferation. Part 1. Homology model, active site architecture and ligand binding.
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Targeting human DNA polymerase alpha for the inhibition of keratinocyte proliferation. Part 1. Homology model, active site architecture and ligand binding.

机译:靶向人类DNA聚合酶α抑制角质形成细胞增殖。第1部分。同源性模型,活性位点结构和配体结合。

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摘要

In order to understand the binding modes of human DNA polymerase alpha (pol alpha) inhibitors on a molecular level, a 3D homology model of the active site of the enzyme was proposed based on the application of molecular modelling methods and molecular dynamic simulations using available crystal coordinates of pol alpha relatives. Docking results for a series of known nucleotide analogue inhibitors were consistent with reported experimental binding data and offered the possibility to elucidate structure-activity relationships via investigations of active site-inhibitor interactions. Furthermore, the study could explain, at least partially, the inhibitory effect of aphidicolin on pol alpha. In molecular dynamics simulations, aphidicolin occupied the catalytic centre, but acted in a not truly competitive manner with respect to nucleotides. It destabilized the replicating "closed" form of the pol alpha and transferred the enzyme into the inactive "open" conformation. This result is consistent with recent experiments on the binding mode of aphidicolin.
机译:为了在分子水平上了解人类DNA聚合酶α(pol alpha)抑制剂的结合模式,基于分子建模方法和使用现有晶体进行的分子动力学模拟,提出了酶活性位点的3D同源性模型。 pol alpha亲戚的坐标。一系列已知核苷酸类似物抑制剂的对接结果与报道的实验结合数据一致,并提供了通过研究活性位点-抑制剂相互作用阐明结构-活性关系的可能性。此外,该研究可以至少部分地解释蚜虫碱对polα的抑制作用。在分子动力学模拟中,Aphidicolin占据了催化中心,但在核苷酸方面却表现得并不真正竞争。它使polα的复制“闭合”形式不稳定,并将酶转移到无活性的“开放”构象中。该结果与最近关于蚜虫二肽结合模式的实验一致。

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