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硼酸盐引导的核糖磷酸化反应用于前生物核苷酸合成。

Borate-guided ribose phosphorylation for prebiotic nucleotide synthesis.

机构信息

Department of Earth Science, Tohoku University, 6-3, Aza-aoba, Aramaki, Aoba-ku, Sendai, 980-8578, Japan.

出版信息

Sci Rep. 2022 Jul 19;12(1):11828. doi: 10.1038/s41598-022-15753-y.

Abstract

Polymers of ribonucleotides (RNAs) are considered to store genetic information and promote biocatalytic reactions for the proto life on chemical evolution. Abiotic synthesis of ribonucleotide was successful in past experiments; nucleoside synthesis occurred first, followed by phosphorylation. These abiotic syntheses are far from biotic reactions and have difficulties as a prebiotic reaction in reacting chemicals in a specific order and purifying intermediates from other molecules in multi-steps of reactions. Another reaction, ribose phosphorylation followed by nucleobase synthesis or nucleobase addition, is close to the biotic reactions of nucleotide synthesis. However, the synthesis of ribose 5'-phosphate under prebiotically plausible conditions remains unclear. Here, we report a high-yield regioselective one-pot synthesis of ribose 5'-phosphate from an aqueous solution containing ribose, phosphate, urea, and borate by simple thermal evaporation. Of note, phosphorylation of ribose before the nucleoside formation differs from the traditional prebiotic nucleotide syntheses and is also consistent with biological nucleotide synthesis. Phosphorylation occurred to the greatest extent in ribose compared to other aldopentoses, only in the presence of borate. Borate is known to improve the stability of ribose preferentially. Geological evidence suggests the presence of borate-rich settings on the early Earth. Therefore, borate-rich evaporitic environments could have facilitated preferential synthesis of ribonucleotide coupled with enhanced stability of ribose on the early Earth.

摘要

核苷酸(RNAs)聚合物被认为在化学进化中储存遗传信息并促进生物催化反应。过去的实验已经成功地进行了非生物合成核苷酸的实验;首先发生核苷合成,然后是磷酸化。这些非生物合成与生物反应相去甚远,并且在多步反应中以特定顺序反应化学物质并从其他分子中纯化中间体方面存在困难。另一种反应是核糖磷酸化,然后是碱基合成或碱基添加,这更接近核苷酸合成的生物反应。然而,在合理的前生物条件下合成核糖 5′-磷酸仍然不清楚。在这里,我们报告了一种从含有核糖、磷酸盐、尿素和硼酸盐的水溶液中通过简单的热蒸发高产区域选择性一锅法合成核糖 5′-磷酸的方法。值得注意的是,在核苷形成之前对核糖进行磷酸化与传统的前生物核苷酸合成不同,也与生物核苷酸合成一致。与其他戊醛糖相比,只有在存在硼酸盐的情况下,核糖的磷酸化程度最大。硼酸盐已知可优先提高核糖的稳定性。地质证据表明,早期地球上存在富含硼酸盐的环境。因此,富含硼酸盐的蒸发环境可能促进了核糖核苷酸的优先合成,并增强了早期地球上核糖的稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1780/9296462/61fe4fe6260c/41598_2022_15753_Fig1_HTML.jpg

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