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合成寡聚物中序列信息的复制。

Replication of Sequence Information in Synthetic Oligomers.

机构信息

Yusuf Hamied Department of Chemistry, University of Cambridge, Lensfield Road, Cambridge CB2 1EW, U.K.

出版信息

Acc Chem Res. 2021 Mar 2;54(5):1298-1306. doi: 10.1021/acs.accounts.0c00852. Epub 2021 Feb 6.

Abstract

The holy grail identified by Orgel in his 1995 Account was the development of novel chemical systems that evolve using reactions in which replication and information transfer occur together. There has been some success in the adaption of nucleic acids to make artificial analogues and in templating oligomerization reactions to form synthetic homopolymers, but replication of sequence information in synthetic polymers remains a major unsolved problem. In this Account, we describe our efforts in this direction based on a covalent base-pairing strategy to transfer sequence information between a parent template and a daughter copy. Oligotriazoles, which carry information as a sequence of phenol and benzoic acid side chains, have been prepared from bifunctional monomers equipped with an azide and an alkyne. Formation of esters between phenols and benzoic acids is used as the equivalent of nucleic base pairing to covalently attach monomer building blocks to a template oligomer. Sequential protection of the phenol side chains on the template, ester coupling of the benzoic acid side chains, and deprotection and ester coupling of the phenol side chains allow quantitative selective base-pair formation on a mixed sequence template. Copper catalyzed azide alkyne cycloaddition (CuAAC) is then used to oligomerize the monomers on the template. Finally, cleavage of the ester base pairs in the product duplex by hydrolysis releases the copy strand. This covalent template-directed synthesis strategy has been successfully used to copy the information encoded in a trimer template into a sequence-complementary oligomer in high yield.The use of covalent base pairing provides opportunities to manipulate the nature of the information transferred in the replication process. By using traceless linkers to connect the phenol and benzoic acid units, it is possible to carry out direct replication, reciprocal replication, and mutation. These preliminary results are promising, and methods have been developed to eliminate some of the side reactions that compete with the CuAAC process that zips up the duplex. end-capping of the copy strand was found to be an effective general method for blocking intermolecular reactions between product duplexes. By selecting an appropriate concentration of an external capping agent, it is also possible to intercept macrocyclization of the reactive chain ends in the product duplex. The other side reaction observed is miscoupling of monomer units that are not attached to adjacent sites on the template, and optimization is required to eliminate these reactions. We are still some way from an evolvable synthetic polymer, but the chemical approach to molecular replication outlined here has some promise.

摘要

奥尔格在 1995 年的报告中指出,圣杯是开发新型化学系统,这些系统通过复制和信息传递同时发生的反应进行演变。已经成功地将核酸适当地转化为人工类似物,并将寡聚反应模板化以形成合成的同聚物,但是在合成聚合物中复制序列信息仍然是一个主要的未解决问题。在本报告中,我们描述了我们在这方面的努力,这是基于一种共价碱基配对策略,以在母体模板和子拷贝之间传递序列信息。寡三唑是从带有叠氮化物和炔烃的双功能单体制备的,其携带的信息是酚和苯甲酸侧链的序列。酚和苯甲酸之间形成酯是核酸碱基配对的等效物,用于共价地将单体构建块连接到模板寡聚物上。在模板上对酚侧链进行顺序保护,对苯甲酸侧链进行酯偶联,以及对酚侧链进行脱保护和酯偶联,可允许在混合序列模板上定量选择性地形成碱基对。然后,使用铜催化的叠氮化物-炔烃环加成(CuAAC)将单体在模板上进行寡聚化。最后,通过水解将产物双链体中的酯碱基对裂解,释放出拷贝链。这种共价模板导向的合成策略已成功地用于将三聚物模板中编码的信息复制到序列互补的寡聚物中,产率很高。使用共价碱基配对提供了操纵复制过程中转移的信息性质的机会。通过使用无痕链接将酚和苯甲酸单元连接起来,可以进行直接复制、相互复制和突变。这些初步结果很有希望,并且已经开发出了一些方法来消除与拉链双链体的 CuAAC 过程竞争的一些副反应。发现末端封端是阻止产物双链体之间的分子间反应的有效通用方法。通过选择适当浓度的外部封端剂,也可以阻止产物双链体中活性链末端的大环化。观察到的另一个副反应是未连接到模板上相邻位置的单体单元的错误偶联,需要进行优化以消除这些反应。我们离可进化的合成聚合物还有一段距离,但这里概述的化学分子复制方法具有一定的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f1a/7931443/50e3dcefa152/ar0c00852_0001.jpg

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