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通过 Knoevenagel 缩合合成香豆素偶联寡核苷酸以制备寡核苷酸文库。

Synthesis of Coumarin-Conjugated Oligonucleotides via Knoevenagel Condensation to Prepare an Oligonucleotide Library.

机构信息

Graduate School of Pharmaceutical Sciences, Osaka University.

Institute for Open and Transdisciplinary Research Initiatives, Osaka University.

出版信息

Chem Pharm Bull (Tokyo). 2024;72(2):143-148. doi: 10.1248/cpb.c23-00295.

Abstract

DNA-encoded libraries (DELs) are attracting attention as a screening tool in the early stages of drug discovery. In the development of DELs, drug candidate compounds are chemically synthesized on barcode DNA. Therefore, it is important to perform the synthesis under mild conditions so as to not damage the DNA. On the other hand, coumarins are gaining increasing research focus not only because they possess excellent fluorescence properties, but also because many medicines contain a coumarin skeleton. Among the various reactions developed for the synthesis of coumarins thus far, Knoevenagel condensation followed by intramolecular cyclization under mild conditions can yield coumarins. In this study, we developed a new synthetic method for preparing a coumarin-conjugated oligonucleotide library via Knoevenagel condensation. The results showed that coumarins substituted at the 5-, 6-, 7-, or 8-positions could be constructed on DNA to afford a total of 26 coumarin-conjugated DNAs. Moreover, this method was compatible with enzymatic ligation, demonstrating its utility in DEL synthesis. The developed strategy for the construction of coumarin scaffolds based on Knoevenagel condensation may contribute to the use of DELs in drug discovery and medicinal chemistry.

摘要

DNA 编码文库 (DEL) 作为药物发现早期的筛选工具引起了人们的关注。在 DEL 的开发中,候选药物化合物在条码 DNA 上进行化学合成。因此,在不破坏 DNA 的情况下,在温和的条件下进行合成非常重要。另一方面,香豆素不仅因其具有优异的荧光特性而受到越来越多的关注,而且许多药物都含有香豆素骨架。迄今为止,已经开发出多种用于合成香豆素的反应,其中 Knoevenagel 缩合随后在温和条件下进行分子内环化可以得到香豆素。在这项研究中,我们开发了一种通过 Knoevenagel 缩合制备香豆素偶联寡核苷酸文库的新方法。结果表明,在 DNA 上可以构建取代 5-、6-、7-或 8-位的香豆素,总共可以得到 26 种香豆素偶联 DNA。此外,该方法与酶连接兼容,证明了它在 DEL 合成中的实用性。基于 Knoevenagel 缩合构建香豆素支架的方法可能有助于在药物发现和药物化学中使用 DEL。

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