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在与前生物相关的条件下进行模板复制(或缺乏模板复制)。

Templated replication (or lack thereof) under prebiotically pertinent conditions.

机构信息

Indian Institute of Science Education and Research (IISER), Dr. Homi Bhabha Road, Pashan, Pune, 411 008, Maharashtra, India.

出版信息

Sci Rep. 2018 Oct 9;8(1):15032. doi: 10.1038/s41598-018-33157-9.

Abstract

Accurate replication of encoded information would have been crucial for the formation and propagation of functional ribozymes during the early evolution of life. Studies aimed at understanding prebiotically pertinent nonenzymatic reactions have predominantly used activated nucleotides. However, the existence of concentrated pools of activated monomers on prebiotic Earth is debatable. In this study, we explored the feasibility of nonenzymatic copying reactions using the more prebiotically relevant 5'-nucleoside monophosphates (5'-NMP). These reactions, involving a 20-mer primer, were performed in the presence of amphiphiles, under volcanic geothermal conditions. Interestingly, the extended primer was not comparable to the expected full length 21-mer product. Our results suggest loss of the nitrogenous base in the extended primer. This phenomenon persisted even after lowering the temperature and when different rehydration solutions were used. We envisage that the loss of the informational moiety on the incoming 5'-NMP, might be occurring during addition of this monomer to the pre-existing oligomer. Significantly, when 5'-ribose monophosphate was used, multiple additions to the aforementioned primer were observed that resulted in hybrid polymers. Such hybrid oligomers could have been important for exploring a vast chemical space of plausible alternate nucleobases, thus having important implications for the origin of primitive informational polymers.

摘要

准确复制编码信息对于功能核酶在生命早期的形成和传播至关重要。旨在理解与前生物相关的非酶反应的研究主要使用了活化核苷酸。然而,在原始地球上存在集中的活化单体池是值得商榷的。在这项研究中,我们使用更具前生物相关性的 5'-核苷一磷酸(5'-NMP)探索了非酶复制反应的可行性。这些反应涉及一个 20 个核苷酸的引物,在火山地热条件下与两亲分子一起进行。有趣的是,延伸的引物与预期的全长 21 个核苷酸产物无法相比。我们的结果表明,延伸的引物中失去了含氮碱基。即使降低温度和使用不同的水合溶液,这种现象仍然存在。我们设想,在将此单体添加到现有寡聚物时,进入的 5'-NMP 上的信息部分可能会丢失。重要的是,当使用 5'-核糖一磷酸时,观察到多次添加到上述引物上,导致形成杂合聚合物。这些杂合寡聚物对于探索可能的替代核碱基的广阔化学空间可能很重要,因此对原始信息聚合物的起源具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2a5a/6177409/958029bfe3a5/41598_2018_33157_Fig1_HTML.jpg

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