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Discovery of fragment molecules that bind the human peroxiredoxin 5 active site. : Screening of human peroxiredoxin 5.

机译:发现与人过氧化物酶5活性位点结合的片段分子。 :筛选人过氧化物酶5。

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摘要

The search for protein ligands is a crucial step in the inhibitor design process. Fragment screening represents an interesting method to rapidly find lead molecules, as it enables the exploration of a larger portion of the chemical space with a smaller number of compounds as compared to screening based on drug-sized molecules. Moreover, fragment screening usually leads to hit molecules that form few but optimal interactions with the target, thus displaying high ligand efficiencies. Here we report the screening of a homemade library composed of 200 highly diverse fragments against the human Peroxiredoxin 5 protein. Peroxiredoxins compose a family of peroxidases that share the ability to reduce peroxides through a conserved cysteine. The three-dimensional structures of these enzymes ubiquitously found throughout evolution have been extensively studied, however, their biological functions are still not well understood and to date few inhibitors have been discovered against these enzymes. Six fragments from the library were shown to bind to the Peroxiredoxin 5 active site and ligand-induced chemical shift changes were used to drive the docking of these small molecules into the protein structure. The orientation of the fragments in the binding pocket was confirmed by the study of fragment homologues, highlighting the role of hydroxyl functions that hang the ligands to the Peroxiredoxin 5 protein. Among the hit fragments, the small catechol molecule was shown to significantly inhibit Peroxiredoxin 5 activity in a thioredoxin peroxidase assay. This study reports novel data about the ligand-Peroxiredoxin interactions that will help considerably the development of potential Peroxiredoxin inhibitors.
机译:寻找蛋白质配体是抑制剂设计过程中的关键步骤。片段筛选代表了一种快速找到先导分子的有趣方法,因为与基于药物大小分子的筛选相比,片段筛选能够使用较少数量的化合物探索更大的化学空间。此外,片段筛选通常会导致命中分子与目标形成极少但最佳的相互作用,从而显示出高配体效率。在这里,我们报告筛选由200个高度多样化的片段组成的针对人类Peroxiredoxin 5蛋白的自制文库。过氧化物酶包括一系列过氧化物酶,它们具有通过保守的半胱氨酸还原过氧化物的能力。已经广泛研究了在整个进化过程中普遍发现的这些酶的三维结构,但是,它们的生物学功能仍未得到很好的理解,迄今为止,几乎没有发现针对这些酶的抑制剂。库中的六个片段显示与Peroxiredoxin 5活性位点结合,配体诱导的化学位移变化用于驱动这些小分子对接至蛋白质结构。片段同源物的研究证实了片段在结合口袋中的方向,突出了将配体悬挂在Peroxiredoxin 5蛋白上的羟基功能的作用。在命中的片段中,小儿茶酚分子在硫氧还蛋白过氧化物酶测定中显示出显着抑制Peroxiredoxin 5活性。这项研究报告了有关配体-Peroxiredoxin相互作用的新数据,这将大大有助于潜在的Peroxiredoxin抑制剂的开发。

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