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Submolecular dissection reveals strong and specific binding of polyamide-pyridostatin conjugates to human telomere interface

机译:沉阳沉积揭示聚酰胺 - 吡吡吡吡吡吡汀缀合物与人端粒体界面的强大和特异性结合

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摘要

To modulate biological functions, G-quadruplexes in genome are often non-specifically targeted by small molecules. Here, specificity is increased by targeting both G-quadruplex and its flanking duplex DNA in a naturally occurring dsDNA-ssDNA telomere interface using polyamide (PA) and pyridostatin (PDS) conjugates (PA-PDS). We innovated a single-molecule assay in which dissociation constant (K-d) of the conjugate can be separately evaluated from the binding of either PA or PDS. We found K-d of 0.8 nM for PA-PDS, which is much lower than PDS (K-d approximate to 450 nM) or PA (K-d approximate to 35 nM). Functional assays further indicated that the PA-PDS conjugate stopped the replication of a DNA polymerase more efficiently than PA or PDS. Our results not only established a new method to dissect multivalent binding into actions of individual monovalent components, they also demonstrated a strong and specific G-quadruplex targeting strategy by conjugating highly specific duplex-binding molecules with potent quadruplex ligands.
机译:为了调节生物学功能,基因组中的G-QuadrupleS通常由小分子非特异性靶向。在此,通过使用聚酰胺(PA)和吡啶抑制蛋白(PDS)缀合物(PA-PDS)在天然存在的DSDNA-SSDNA端粒界面中靶向G-Quadruple及其侧翼双相DNA来增加特异性。我们创新了一种单分子测定,其中可以分别从PA或Pds的结合分别评估缀合物的解离常数(K-D)。我们发现PA-Pds的0.8nm的K-D远低于PDS(K-D近似到450nm)或PA(K-D近似约35nm)。功能性测定进一步表明PA-PDS缀合物比PA或Pds更有效地停止了DNA聚合酶的复制。我们的结果不仅建立了将多价结合的新方法疏忽了个体单价组分的作用,它们还通过将高度特异性双相结合分子与有效的Quadreple配体缀合来证明了一种强大的G-Quadwruple靶标策略。

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