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首页> 外文期刊>ACS Omega >Small-Molecule-Based Self-Assembled Ligands for G-Quadruplex DNA Surface Recognition
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Small-Molecule-Based Self-Assembled Ligands for G-Quadruplex DNA Surface Recognition

机译:基于小分子的自组装配体的G四联体DNA表面识别。

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Most drugs are small molecules because of their attractive pharmacokinetics, manageable development and manufacturing, and effective binding into the concave crevices of bio-macromolecules. Despite these features, they often fall short when it comes to effectively recognizing the surfaces of bio-macromolecules. One way to overcome the challenge of biomolecular surface recognition is to develop small molecules that become self-assembled ligands (SALs) prior to binding. Herein, we report SALs made from 8-aryl-2′-deoxyguanosine derivatives forming precise hydrophilic supramolecular G-quadruplexes (SGQs) with excellent size, shape, and charge complementarity to G-quadruplex DNA (QDNA). We show that only those compounds forming SGQs act as SALs, which in turn differentially stabilize QDNAs from selected oncogene promoters and the human telomeric regions. Fluorescence resonance energy-transfer melting assays are consistent with spectroscopic, calorimetric, and light scattering studies, showing the formation of a “sandwichlike” complex QDNA·SGQ·QDNA. These results open the door for the advent of SALs that recognize QDNAs and potentially the surfaces of other bio-macromolecules such as proteins.
机译:大多数药物都是小分子,因为它们具有诱人的药代动力学,易于控制的开发和制造以及有效结合到生物大分子凹入缝隙中的特性。尽管具有这些功能,但在有效识别生物大分子表面时,它们常常不足。克服生物分子表面识别挑战的一种方法是开发在结合前成为自组装配体(SAL)的小分子。本文中,我们报道了由8-芳基-2'-脱氧鸟苷衍生物制成的SAL,形成了具有出色的大小,形状和电荷互补性的精确的亲水性超分子G-四链体(SGQs),与G-四链体DNA(QDNA)具有互补性。我们表明,只有那些形成SGQs的化合物充当SAL,SAL才能从选定的癌基因启动子和人类端粒区域差异化稳定QDNA。荧光共振能量转移解链测定与光谱,量热和光散射研究一致,表明形成了“三明治状”复合物QDNA·SGQ·QDNA。这些结果为识别QDNA以及可能识别其他生物大分子(例如蛋白质)表面的SAL的出现打开了大门。

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