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用于非生物RNA寡聚反应的核糖核苷酸原位咪唑活化

In situ imidazole activation of ribonucleotides for abiotic RNA oligomerization reactions.

作者信息

Burcar Bradley T, Jawed Mohsin, Shah Hari, McGown Linda B

机构信息

New York Center for Astrobiology and the Department of Chemistry and Chemical Biology, Rensselaer Polytechnic Institute, 110 8th Street Troy, New York, 12180, USA.

出版信息

Orig Life Evol Biosph. 2015 Jun;45(1-2):31-40. doi: 10.1007/s11084-015-9412-y. Epub 2015 Feb 27.

Abstract

The hypothesis that RNA played a significant role in the origin of life requires effective and efficient abiotic pathways to produce RNA oligomers. The most successful abiotic oligomerization reactions to date have utilized high-energy, modified, or pre-activated ribonucleotides to generate strands of RNA up to 50-mers in length. In spite of their success, these modifications and pre-activation reactions significantly alter the ribonucleotides in ways that are highly unlikely to have occurred on a prebiotic Earth. This research seeks to address this problem by exploring an aqueous based method for activating the canonical ribonucleotides in situ using 1-Ethyl-3-(3-dimethylaminopropyl) carbodiimide (EDC) and imidazole. The reactions were run with and without a montmorillonite clay catalyst and compared to reactions that used ribonucleotides that were pre-activated with imidazole. The effects of pH and ribonucleotide concentration were also investigated. The results demonstrate the ability of in situ activation of ribonucleotides to generate linear RNA oligomers in solution, providing an alternative route to produce RNA for use in prebiotic Earth scenarios.

摘要

RNA在生命起源中发挥了重要作用这一假说,需要有效且高效的非生物途径来产生RNA寡聚物。迄今为止,最成功的非生物寡聚反应利用了高能、经过修饰或预先活化的核糖核苷酸,以生成长度达50聚体的RNA链。尽管取得了成功,但这些修饰和预活化反应以极不可能在生命起源前的地球上发生的方式,显著改变了核糖核苷酸。本研究旨在通过探索一种基于水相的方法来解决这个问题,该方法使用1-乙基-3-(3-二甲基氨基丙基)碳二亚胺(EDC)和咪唑原位活化标准核糖核苷酸。反应在有和没有蒙脱石粘土催化剂的情况下进行,并与使用经咪唑预活化的核糖核苷酸的反应进行比较。还研究了pH值和核糖核苷酸浓度的影响。结果表明,核糖核苷酸的原位活化能够在溶液中生成线性RNA寡聚物,为在生命起源前的地球场景中生产用于RNA提供了一条替代途径。

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