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功能独立的复杂天然产物 DNA 编码。

Functionality-Independent DNA Encoding of Complex Natural Products.

机构信息

Shanghai Institute for Advanced Immunochemical Studies, ShanghaiTech University, 201210, Shanghai, China.

School of Life Science and Technology, ShanghaiTech University, 201210, Shanghai, China.

出版信息

Angew Chem Int Ed Engl. 2019 Jul 1;58(27):9254-9261. doi: 10.1002/anie.201901485. Epub 2019 May 22.

Abstract

DNA encoded chemical libraries (DELs) link the powers of genetics and chemical synthesis via combinatorial optimization. Through combinatorial chemistry, DELs can grow to the unprecedented size of billions to trillions. To take full advantage of the DEL approach, linking the power of genetics directly to chemical structures would offer even greater diversity in a finite chemical world. Natural products have evolved an incredible structural diversity along with their biological evolution. Herein, we used traditional Chinese medicines (TCMs) as examples in a late-stage modification toolbox approach to annotate these complex organic compounds with amplifiable DNA barcodes, which could be easily incorporated into a DEL. The method of end-products labeling also generates a cluster of isomers with a single DNA tag at different sites. These isomers provide an additional spatial diversity for multiple accessible pockets of targeted proteins. Notably, a novel PARP1 inhibitor from TCM has been identified from the natural products enriched DEL (nDEL).

摘要

DNA 编码化学库 (DEL) 通过组合优化将遗传学和化学合成的力量结合在一起。通过组合化学,DEL 可以增长到数十亿到数万亿的空前规模。为了充分利用 DEL 方法,将遗传学的力量直接与化学结构联系起来,将在有限的化学世界中提供更大的多样性。天然产物在其生物进化过程中产生了令人难以置信的结构多样性。在此,我们以中药 (TCM) 为例,采用晚期修饰工具盒方法对这些复杂的有机化合物进行可扩增的 DNA 条码注释,这些条码可以很容易地整合到 DEL 中。末端产物标记方法还在不同位点生成了一组带有单个 DNA 标记的异构体。这些异构体为靶向蛋白的多个可及口袋提供了额外的空间多样性。值得注意的是,从富含天然产物的 DEL(nDEL)中鉴定出一种来自中药的新型 PARP1 抑制剂。

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