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Targeting the OB-Folds of Replication Protein A with Small Molecules

机译:用小分子靶向复制蛋白A的OB折叠

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摘要

Replication protein A (RPA) is the main eukaryotic single-strand (ss) DNA-binding protein involved in DNA replication and repair. We have identified and developed two classes of small molecule inhibitors (SMIs) that show in vitro inhibition of the RPA-DNA interaction. We present further characterization of these SMIs with respect to their target binding, mechanism of action, and specificity. Both reversible and irreversible modes of inhibition are observed for the different classes of SMIs with one class found to specifically interact with DNA-binding domains A and B (DBD-A/B) of RPA. In comparison with other oligonucleotide/oligosaccharide binding-fold (OB-fold) containing ssDNA-binding proteins, one class of SMIs displayed specificity for the RPA protein. Together these data demonstrate that the specific targeting of a protein-DNA interaction can be exploited towards interrogating the cellular activity of RPA as well as increasing the efficacy of DNA-damaging chemotherapeutics used in cancer treatment.
机译:复制蛋白A(RPA)是参与DNA复制和修复的主要真核单链(ss)DNA结合蛋白。我们已经确定并开发了两类小分子抑制剂(SMI),它们在体外显示出对RPA-DNA相互作用的抑制作用。我们就这些SMI的目标结合,作用机制和特异性提出了进一步的特征。对于不同类别的SMI,观察到了抑制的可逆和不可逆两种模式,其中一种被发现与RPA的DNA结合域A和B(DBD-A / B)发生特异性相互作用。与其他含有ssDNA结合蛋白的寡核苷酸/寡糖结合倍数(OB-fold)相比,一类SMI显示出对RPA蛋白的特异性。这些数据加在一起表明,可以利用蛋白质-DNA相互作用的特异性靶点来询问RPA的细胞活性以及增加用于癌症治疗的DNA破坏性化学疗法的功效。

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