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TWJ-Screen: an isothermal screening assay to assess ligand/DNA junction interactions in vitro

机译:TWJ-Screen:等温筛选测定法用于评估体外的配体/ DNA连接相互作用

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摘要

The quest for chemicals able to operate at selected genomic loci in a spatiotemporally controlled manner is desirable to create manageable DNA damages. Mounting evidence now shows that alternative DNA structures, including G-quadruplexes and branched DNA (or DNA junctions), might hamper proper progression of replication fork, thus triggering DNA damages and genomic instability. Therefore, small molecules that stabilize these DNA structures are currently scrutinized as a promising way to create genomic defects that cannot be dealt with properly by cancer cells. While much emphasis has been recently given to G-quadruplexes and related ligands, we report herein on three-way DNA junctions (TWJ) and related ligands. We first highlight the biological implications of TWJ and their strategic relevance as triggers for replicative stress. Then, we describe a new in vitro high-throughput screening assay, TWJ-Screen, which allows for identifying TWJ ligands with both high affinity and selectivity for TWJ over other DNA structures (duplexes and quadruplexes), in a convenient and unbiased manner as demonstrated by the screening of a library of 25 compounds from different chemical families. TWJ-Screen thus represents a reliable mean to uncover molecular tools able to foster replicative stress through an innovative approach, thus providing new strategic opportunities to combat cancers.
机译:寻求能够以时空受控的方式在选定的基因组位点上起作用的化学物质以产生可控的DNA损伤。现在越来越多的证据表明,替代的DNA结构,包括G-四链体和分支的DNA(或DNA连接),可能会阻碍复制叉的正常进行,从而引发DNA损伤和基因组不稳定。因此,目前正在对稳定这些DNA结构的小分子进行仔细检查,将其作为产生无法由癌细胞适当处理的基因组缺陷的有前途的方法。虽然最近已对G-四链体和相关配体给予了很大的重视,但我们在此报告了三向DNA连接(TWJ)和相关配体。我们首先强调TWJ的生物学含义及其作为复制压力触发因素的战略相关性。然后,我们描述了一种新的体外高通量筛选测定法TWJ-Screen,该测定法能够以便捷且无偏见的方式鉴定出对TWJ相对于其他DNA结构(双链体和四链体)具有高亲和力和选择性的TWJ配体通过筛选来自不同化学家族的25种化合物的库。因此,TWJ-Screen代表了一种可靠的手段,可以发现能够通过创新方法促进复制压力的分子工具,从而为抗击癌症提供了新的战略机遇。

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