B CUBE Center for Molecular Bioengineering, Technische Universität Dresden, Dresden 01307 (Germany).
Angew Chem Int Ed Engl. 2015 Jun 26;54(27):7924-8. doi: 10.1002/anie.201501775. Epub 2015 May 26.
Dynamic combinatorial chemistry (DCC) explores the thermodynamic equilibrium of reversible reactions. Its application in the discovery of protein binders is largely limited by difficulties in the analysis of complex reaction mixtures. DNA-encoded chemical library (DECL) technology allows the selection of binders from a mixture of up to billions of different compounds; however, experimental results often show low a signal-to-noise ratio and poor correlation between enrichment factor and binding affinity. Herein we describe the design and application of DNA-encoded dynamic combinatorial chemical libraries (EDCCLs). Our experiments have shown that the EDCCL approach can be used not only to convert monovalent binders into high-affinity bivalent binders, but also to cause remarkably enhanced enrichment of potent bivalent binders by driving their in situ synthesis. We also demonstrate the application of EDCCLs in DNA-templated chemical reactions.
动态组合化学(DCC)探索了可逆反应的热力学平衡。它在蛋白质配体发现中的应用在很大程度上受到分析复杂反应混合物困难的限制。DNA 编码化学文库(DECL)技术允许从多达数十亿种不同化合物的混合物中选择配体;然而,实验结果通常显示信号与噪声比低,富集因子与结合亲和力之间相关性差。本文介绍了 DNA 编码动态组合化学文库(EDCCL)的设计和应用。我们的实验表明,EDCCL 方法不仅可以将单价配体转化为高亲和力的二价配体,而且可以通过原位合成来显著增强有效二价配体的富集。我们还展示了 EDCCL 在 DNA 模板化学中的应用。