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一类主要为疏水性的非天然碱基对的大沟取代基和聚合酶识别。

Major groove substituents and polymerase recognition of a class of predominantly hydrophobic unnatural base pairs.

机构信息

Department of Chemistry, The Scripps Research Institute, 10550 North Torrey Pines Road, La Jolla, California 92037, USA.

出版信息

Chemistry. 2012 Jan 23;18(4):1231-9. doi: 10.1002/chem.201102066. Epub 2011 Dec 21.

Abstract

Expansion of the genetic alphabet with an unnatural base pair is a long-standing goal of synthetic biology. We have developed a class of unnatural base pairs, formed between d5SICS and analogues of dMMO2 that are efficiently and selectively replicated by the Klenow fragment (Kf) DNA polymerase. In an effort to further characterize and optimize replication, we report the synthesis of five new dMMO2 analogues bearing different substituents designed to be oriented into the developing major groove and an analysis of their insertion opposite d5SICS by Kf and Thermus aquaticus DNA polymerase I (Taq). We also expand the analysis of the previously optimized pair, dNaM-d5SICS, to include replication by Taq. Finally, the efficiency and fidelity of PCR amplification of the base pairs by Taq or Deep Vent polymerases was examined. The resulting structure-activity relationship data suggest that the major determinants of efficient replication are the minimization of desolvation effects and the introduction of favorable hydrophobic packing, and that Taq is more sensitive than Kf to structural changes. In addition, we identify an analogue (dNMO1) that is a better partner for d5SICS than any of the previously identified dMMO2 analogues with the exception of dNaM. We also found that dNaM-d5SICS is replicated by both Kf and Taq with rates approaching those of a natural base pair.

摘要

用非天然碱基对扩展遗传密码子是合成生物学的长期目标。我们开发了一类非天然碱基对,由 d5SICS 和 dMMO2 的类似物形成,这些碱基对可被 Klenow 片段(Kf)DNA 聚合酶高效且选择性地复制。为了进一步表征和优化复制,我们报告了 5 种新的 dMMO2 类似物的合成,这些类似物带有不同的取代基,旨在定向进入正在形成的大沟,并分析了它们在 Kf 和水生栖热菌 DNA 聚合酶 I(Taq)的作用下与 d5SICS 的插入情况。我们还扩展了对先前优化的 dNaM-d5SICS 对的分析,包括 Taq 的复制。最后,检查了 Taq 或 Deep Vent 聚合酶对碱基对的 PCR 扩增的效率和保真度。所得的结构-活性关系数据表明,高效复制的主要决定因素是最小化去溶剂化效应和引入有利的疏水性堆积,并且 Taq 比 Kf 对结构变化更敏感。此外,我们确定了一种类似物(dNMO1),它比以前鉴定的任何 dMMO2 类似物(除了 dNaM)都是与 d5SICS 更好的配对物。我们还发现 dNaM-d5SICS 可被 Kf 和 Taq 以接近天然碱基对的速率复制。

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