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非天然碱基对的结构、复制机制及优化

Solution structure, mechanism of replication, and optimization of an unnatural base pair.

机构信息

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

出版信息

Chemistry. 2010 Nov 8;16(42):12650-9. doi: 10.1002/chem.201000959.

Abstract

As part of an ongoing effort to expand the genetic alphabet for in vitro and eventual in vivo applications, we have synthesized a wide variety of predominantly hydrophobic unnatural base pairs and evaluated their replication in DNA. Collectively, the results have led us to propose that these base pairs, which lack stabilizing edge-on interactions, are replicated by means of a unique intercalative mechanism. Here, we report the synthesis and characterization of three novel derivatives of the nucleotide analogue dMMO2, which forms an unnatural base pair with the nucleotide analogue d5SICS. Replacing the para-methyl substituent of dMMO2 with an annulated furan ring (yielding dFMO) has a dramatically negative effect on replication, while replacing it with a methoxy (dDMO) or with a thiomethyl group (dTMO) improves replication in both steady-state assays and during PCR amplification. Thus, dTMO-d5SICS, and especially dDMO-d5SICS, represent significant progress toward the expansion of the genetic alphabet. To elucidate the structure-activity relationships governing unnatural base pair replication, we determined the solution structure of duplex DNA containing the parental dMMO2-d5SICS pair, and also used this structure to generate models of the derivative base pairs. The results strongly support the intercalative mechanism of replication, reveal a surprisingly high level of specificity that may be achieved by optimizing packing interactions, and should prove invaluable for the further optimization of the unnatural base pair.

摘要

作为扩大体外和最终体内应用遗传密码子的持续努力的一部分,我们合成了各种主要疏水性非天然碱基对,并评估了它们在 DNA 中的复制。总的来说,这些结果使我们提出,这些缺乏稳定边缘相互作用的碱基对通过独特的嵌入机制进行复制。在这里,我们报告了核苷酸类似物 dMMO2 的三个新型衍生物的合成和表征,该类似物与核苷酸类似物 d5SICS 形成非天然碱基对。用稠合呋喃环(生成 dFMO)取代 dMMO2 的对甲基取代基对复制具有显著的负影响,而用甲氧基(dDMO)或硫甲基(dTMO)取代则可以提高稳态测定和 PCR 扩增过程中的复制。因此,dTMO-d5SICS,特别是 dDMO-d5SICS,代表了朝着扩展遗传密码子迈出的重要一步。为了阐明指导非天然碱基对复制的结构-活性关系,我们确定了含有亲本 dMMO2-d5SICS 对的双链 DNA 的溶液结构,并且还使用该结构生成了衍生碱基对的模型。结果强烈支持复制的嵌入机制,揭示了通过优化包装相互作用可能实现的惊人高水平的特异性,并且应该对进一步优化非天然碱基对非常有价值。

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本文引用的文献

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J Am Chem Soc. 2009 Oct 21;131(41):14620-1. doi: 10.1021/ja906186f.
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