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将C(sp) -H活化与DNA编码相结合。

Merging C(sp)-H activation with DNA-encoding.

作者信息

Fan Zhoulong, Zhao Shuai, Liu Tao, Shen Peng-Xiang, Cui Zi-Ning, Zhuang Zhe, Shao Qian, Chen Jason S, Ratnayake Anokha S, Flanagan Mark E, Kölmel Dominik K, Piotrowski David W, Richardson Paul, Yu Jin-Quan

机构信息

Department of Chemistry, The Scripps Research Institute 10550 North Torrey Pines Road, La Jolla CA 92037 USA

Automated Synthesis Facility, The Scripps Research Institute 10550 North Torrey Pines Road, La Jolla CA 92037 USA.

出版信息

Chem Sci. 2020 Sep 7;11(45):12282-12288. doi: 10.1039/d0sc03935g.

Abstract

DNA-encoded library (DEL) technology has the potential to dramatically expedite hit identification in drug discovery owing to its ability to perform protein affinity selection with millions or billions of molecules in a few experiments. To expand the molecular diversity of DEL, it is critical to develop different types of DNA-encoded transformations that produce billions of molecules with distinct molecular scaffolds. Sequential functionalization of multiple C-H bonds provides a unique avenue for creating diversity and complexity from simple starting materials. However, the use of water as solvent, the presence of DNA, and the extremely low concentration of DNA-encoded coupling partners (0.001 M) have hampered the development of DNA-encoded C(sp)-H activation reactions. Herein, we report the realization of palladium-catalyzed C(sp)-H arylation of aliphatic carboxylic acids, amides and ketones with DNA-encoded aryl iodides in water. Notably, the present method enables the use of alternative sets of monofunctional building blocks, providing a linchpin to facilitate further setup for DELs. Furthermore, the C-H arylation chemistry enabled the on-DNA synthesis of structurally-diverse scaffolds containing enriched C(sp) character, chiral centers, cyclopropane, cyclobutane, and heterocycles.

摘要

DNA编码文库(DEL)技术有潜力极大地加快药物发现过程中的命中化合物识别,因为它能够通过几次实验对数百万或数十亿个分子进行蛋白质亲和力筛选。为了扩大DEL的分子多样性,开发不同类型的DNA编码转化至关重要,这些转化能够产生数十亿个具有独特分子骨架的分子。多个C-H键的顺序官能化提供了一条从简单起始原料创造多样性和复杂性的独特途径。然而,以水为溶剂、DNA的存在以及DNA编码偶联伙伴的极低浓度(0.001 M)阻碍了DNA编码的C(sp)-H活化反应的发展。在此,我们报告了在水中用DNA编码的芳基碘化物实现钯催化的脂肪族羧酸、酰胺和酮的C(sp)-H芳基化反应。值得注意的是,本方法能够使用其他单官能构建块组合,为促进DEL的进一步构建提供了关键。此外,C-H芳基化化学实现了在DNA上合成结构多样的支架,这些支架含有丰富的C(sp)特征、手性中心、环丙烷、环丁烷和杂环。

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