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N- 烷基键联剂用于 DNA 编码化学文库。

N-Alkyl Linkers for DNA-Encoded Chemical Libraries.

机构信息

Pharmaron (Ningbo) Technology Development Co., Ltd., No. 800 Bin-Hai 4th Road, Hangzhou Bay New Zone, Ningbo, 315336, P. R. China.

Pharmaron Beijing Co., Ltd., BDA, Taihe Road, Beijing, 100176, P. R. China.

出版信息

Chem Asian J. 2022 Apr 1;17(7):e202200016. doi: 10.1002/asia.202200016. Epub 2022 Mar 7.

Abstract

A series of novel N-alkyl linkers that connect small-molecule library members with their encoding DNA oligonucleotides has been developed. In comparison with the standard amide linker (usually constructed with oligo-AOP-NH ), the N-alkyl linker is not only more chemically stable, but also provides better structural diversity at the linkage point. Chemical variety in the vicinity of the polyglycol terminus, in particular, could affect binding interactions with the target protein. It could have been neglected in previous DNA-encoded chemical library (DEL) synthesis and screening studies due to the limited linkage alternatives. With these linkers, one can produce versatile key intermediates as Cycle 1 products directly amenable to Cycle 2 chemistry without the use of protecting groups. As a result, a DEL synthesis process that uses the fewest chemical conversions, such as 3-step, 3-cycle DELs, can achieve higher synthetic efficiency while creating less DNA tag degradation, resulting in higher quality DELs.

摘要

已经开发出一系列新型的 N-烷基连接子,用于将小分子文库成员与其编码 DNA 寡核苷酸连接。与标准的酰胺连接子(通常由 oligo-AOP-NH 构建)相比,N-烷基连接子不仅更具化学稳定性,而且在连接点处提供更好的结构多样性。聚乙二醇末端附近的化学多样性,特别是可能会影响与靶蛋白的结合相互作用。由于连接选择有限,在以前的 DNA 编码化学文库(DEL)合成和筛选研究中可能被忽略了。使用这些连接子,人们可以直接作为 Cycle 1 产物生产多功能关键中间体,适用于 Cycle 2 化学,而无需使用保护基团。因此,使用最少化学转化(例如 3 步、3 循环 DELs)的 DEL 合成工艺可以实现更高的合成效率,同时减少 DNA 标签降解,从而生成更高质量的 DELs。

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