An Amphiphilic Polymer-Supported Strategy Enables Chemical Transformations under Anhydrous Conditions for DNA-Encoded Library Synthesis

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Yves Ruff, Roberto Martinez, Xavier Pellé, Pierre Nimsgern, Pascale Fille, Maxim Ratnikov, Frédéric Berst*
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Abstract

The use of DNA-encoded libraries has emerged as a powerful hit generation technology. Combining the power of combinatorial chemistry to enumerate large compound collections with the efficiency of affinity selection in pools, the methodology makes it possible to interrogate vast chemical space against biological targets of pharmaceutical relevance. Thus, the chemical transformations employed for the synthesis of encoded libraries play a crucial role in the identification of diverse and drug-like starting points. Currently established transformations have mostly been limited to water-compatible reactions to accommodate the growing oligonucleotide tag. Herein, we describe the development of a practical catch-and-release methodology utilizing a cationic, amphiphilic PEG-based polymer to perform chemical transformations on immobilized DNA conjugates under anhydrous conditions. We demonstrate the usefulness of our APTAC (amphiphilic polymer-facilitated transformations under anhydrous conditions) approach by performing several challenging transformations on DNA-conjugated small molecules in pure organic solvents: the addition of a carbanion equivalent to a DNA-conjugated ketone in tetrahydrofuran, the synthesis of saturated heterocycles using the tin (Sn) amine protocol (SnAP) in dichloromethane, and the dual-catalytic (Ir/Ni) metallaphotoredox decarboxylative cross-coupling of carboxylic acids to DNA-conjugated aryl halides in DMSO. In addition, we demonstrate the feasibility of the latter in multititer-plate format.

Abstract Image

两亲性聚合物支持策略在无水条件下实现dna编码文库合成的化学转化
dna编码文库的使用已经成为一种强大的热门生成技术。结合组合化学的力量,枚举大型化合物集合与池中亲和选择的效率,该方法使得针对药物相关的生物靶标询问广阔的化学空间成为可能。因此,用于合成编码文库的化学转化在识别不同的和类似药物的起始点方面起着至关重要的作用。目前建立的转化大多局限于水相容反应,以适应不断增长的寡核苷酸标签。在这里,我们描述了一种实用的捕获和释放方法的发展,利用阳离子,两亲性的peg基聚合物在无水条件下对固定的DNA偶联物进行化学转化。我们通过在纯有机溶剂中对dna共轭小分子进行几种具有挑战性的转化,证明了APTAC(无水条件下两亲性聚合物促进转化)方法的实用性:在四氢呋喃中加入相当于dna共轭酮的碳离子,在二氯甲烷中使用锡(Sn)胺协议(SnAP)合成饱和杂环,以及在DMSO中双催化(Ir/Ni)金属光氧化还原脱羧交叉偶联羧酸与dna共轭芳酰卤化物。此外,我们还论证了后者在多片格式下的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
7.20
自引率
4.30%
发文量
567
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