Homogeneous and Functional Group Tolerant Ring-Closing Metathesis for DNA-Encoded Chemical Libraries

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Olivier B. C. Monty, Pranavanand Nyshadham, Kurt M. Bohren, Murugesan Palaniappan, Martin M. Matzuk, Damian W. Young*, Nicholas Simmons*
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引用次数: 24

Abstract

Reaction heterogeneity, poor pH control, and catalyst decomposition in the ring-closing metathesis (RCM) of DNA–chemical conjugates lead to poor yields of the cyclized products. Herein we address these issues with a RCM reaction system that includes a novel aqueous solvent combination to enable reaction homogeneity, an acidic buffer system which masks traditionally problematic functional groups, and a decomposition-resistant catalyst which maximizes conversion to the cyclized product. Additionally, we provide a systematic study of the substrate scope of the on-DNA RCM reaction, a demonstration of its applicability to a single-substrate DNA-encoded chemical library that includes sequencing analysis, and the first successful stapling of an unprotected on-DNA [i, i+4] peptide.

Abstract Image

dna编码化学文库的齐次和官能团容忍闭环元分析
在dna -化学偶联物的合环复分解(RCM)过程中,反应非均质性、pH控制不佳以及催化剂分解导致环化产物的产率较低。在这里,我们用一个RCM反应系统来解决这些问题,该反应系统包括一种新的水溶剂组合,以实现反应的均匀性,一个酸性缓冲系统,掩盖传统上有问题的官能团,以及一个抗分解催化剂,最大限度地转化为环化产物。此外,我们对dna上RCM反应的底物范围进行了系统的研究,证明了其对单底物dna编码化学文库的适用性,包括测序分析,并首次成功地钉接了未受保护的dna上[i, i+4]肽。
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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