Wang Xuan, Liu Jiaxiang, Yan Ziqin, Liu Xiaohong, Liu Sixiu, Suo Yanrui, Lu Weiwei, Yue Jinfeng, Chen Kaixian, Jiang Hualiang, Zhao Yujun, Zheng Mingyue, Dai Dongcheng, Lu Xiaojie
State Key Laboratory of Drug Research, Shanghai Institute of Materia Medica, Chinese Academy of Sciences 501 Haike Road, Zhang Jiang Hi-Tech Park, Pudong Shanghai 201203 P. R. China
Amgen Asia R&D Center, Amgen Biopharmaceutical R&D (Shanghai) Co., Ltd. 4560 Jinke Road, Building No. 2, 13th Floor, Pudong Shanghai 201210 P. R. China.
Chem Sci. 2021 Jan 4;12(8):2841-2847. doi: 10.1039/d0sc06696f.
DNA-encoded library technology (DELT) employs DNA as a barcode to track the sequence of chemical reactions and enables the design and synthesis of libraries with billions of small molecules through combinatorial expansion. This powerful technology platform has been successfully demonstrated for hit identification and target validation for many types of diseases. As a highly integrated technology platform, DEL is capable of accelerating the translation of synthetic chemistry by using on-DNA compatible reactions or off-DNA scaffold synthesis. Herein, we report the development of a series of novel on-DNA transformations based on oxindole scaffolds for the design and synthesis of diversity-oriented DNA-encoded libraries for screening. Specifically, we have developed 1,3-dipolar cyclizations, cyclopropanations, ring-opening of reactions of aziridines and Claisen-Schmidt condensations to construct diverse oxindole derivatives. The majority of these transformations enable a diversity-oriented synthesis of DNA-encoded oxindole libraries which have been used in the successful hit identification for three protein targets. We have demonstrated that a diversified strategy for DEL synthesis could accelerate the application of synthetic chemistry for drug discovery.
DNA编码文库技术(DELT)利用DNA作为条形码来追踪化学反应序列,并通过组合扩展实现数十亿个小分子文库的设计与合成。这个强大的技术平台已成功应用于多种疾病的活性化合物筛选和靶点验证。作为一个高度集成的技术平台,DELT能够通过使用与DNA兼容的反应或非DNA支架合成来加速合成化学的转化。在此,我们报告了一系列基于氧化吲哚支架的新型DNA上转化反应的开发,用于设计和合成用于筛选的多样化导向DNA编码文库。具体而言,我们开发了1,3-偶极环化、环丙烷化、氮丙啶开环反应和克莱森-施密特缩合反应,以构建多样的氧化吲哚衍生物。这些转化反应大多能够实现多样化导向的DNA编码氧化吲哚文库合成,该文库已成功用于三个蛋白质靶点的活性化合物筛选。我们已经证明,DELT合成的多样化策略可以加速合成化学在药物发现中的应用。