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Preferential formation of (5S,6R)-thymine glycol for oligodeoxyribonucleotide synthesis and analysis of drug binding to thymine glycol-containing DNA

机译:优先形成(5S,6R)-胸腺嘧啶二醇用于寡聚脱氧核糖核苷酸的合成和药物与含胸腺嘧啶二醇的DN​​A结合的分析

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摘要

We previously reported the chemical synthesis of oligonucleotides containing thymine glycol, a major form of oxidative DNA damage. In the preparation of the phosphoramidite building block, the predominant product of the osmium tetroxide oxidation of protected thymidine was (5R,6S)-thymidine glycol. To obtain the building block of the other isomer, (5S,6R)-thymidine glycol, in an amount sufficient for oligonucleotide synthesis, the Sharpless asymmetric dihydroxylation (AD) reaction was examined. Although the reaction was very slow, (5S,6R)-thymidine glycol was obtained in preference to the (5R,6S) isomer. The ratio of (5S,6R)- and (5R,6S)-thymidine glycols was 2:1, and a trans isomer was also formed. When an ionic liquid, 1-butyl-3-methylimidazolium hexafluorophosphate, was used as a co-solvent, the reaction became faster, and the yield was improved without changing the preference. The phosphoramidite building block of (5S,6R)-thymidine glycol was prepared, and oligonucleotides containing 5S-thymine glycol were synthesized. One of the oligonucleotides was used to analyze the binding of distamycin A to thymine glycol-containing DNA by Circular dichroism (CD) spectroscopy and surface plasmon resonance (SPR) measurements. Distamycin A bound to a duplex containing either isomer of thymine glycol within the AATT target site, and its binding was observed even when the thymine glycol was placed opposite cytosine.
机译:我们先前曾报道过含有胸腺嘧啶二醇的寡核苷酸的化学合成,这是氧化性DNA损伤的主要形式。在亚磷酰胺结构单元的制备中,受保护的胸苷的四氧化os氧化的主要产物是(5R,6S)-胸苷二醇。为了获得足以用于寡核苷酸合成的量的另一异构体(5S,6R)-胸苷二醇的结构单元,检查了Sharpless不对称二羟基化(AD)反应。尽管反应非常缓慢,但优先于(5R,6S)异构体获得(5S,6R)-胸苷二醇。 (5S,6R)-和(5R,6S)-胸苷二醇的比例为2∶1,并且还形成了反式异构体。当使用离子液体六氟磷酸1-丁基-3-甲基咪唑鎓作为助溶剂时,反应变得更快,并且产率得到了提高,而没有改变偏好。制备(5S,6R)-胸苷二醇的亚磷酰胺构件,并合成含有5S-胸腺嘧啶二醇的寡核苷酸。寡核苷酸之一用于通过圆二色性(CD)光谱和表面等离子体共振(SPR)测量来分析二霉素A与含胸腺嘧啶二醇的DN​​A的结合。 Distamycin A与AATT靶位点内包含胸腺嘧啶二醇异构体的双链体结合,即使将胸腺嘧啶二醇与胞嘧啶相对放置,也观察到它的结合。

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