Light-Assisted Formation of Nucleosides and Nucleotides from Formamide in the Presence of Cerium Phosphate

Life Pub Date : 2024-07-05 DOI:10.3390/life14070846
Shoval Gilboa, Larisa Panz, Nitai Arbell, Yaron Paz
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Abstract

The abiotic formation of nucleotides from small, simple molecules is of large interest in the context of elucidating the origin of life scenario. In what follows, it is shown that nucleosides and nucleotides can be formed from formamide in a one-pot reaction utilizing the mineral cerium phosphate (CePO4) as a photocatalyst, a catalyst and a reactant that supplies the necessary phosphate groups. While the most abundant RNA/DNA building blocks were thymidine and thymidine monophosphate, considerable yields of other building blocks such as cytidine, cytidine monophosphate, and adenosine cyclic monophosphate were found. Comparing the yield of nucleosides and nucleotides under light conditions to that in the dark suggests that in the presence of cerium phosphate, light promotes the formation of nucleobases, whereas the formation of nucleotides from nucleosides take place even in the absence of light. The scenario described herein is considerably simpler than other scenarios involving several steps and several reactants. Therefore, by virtue of the principle of Occam’s razor, it should be of large interest for the community.
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在磷酸铈存在下光辅助甲酰胺形成核苷和核苷酸
从简单的小分子中非生物地形成核苷酸,对于阐明生命起源情景具有重大意义。下文将说明,利用矿物磷酸铈(CePO4)作为光催化剂、催化剂和提供必要磷酸基团的反应物,核苷和核苷酸可在一次反应中由甲酰胺形成。虽然最丰富的 RNA/DNA 构建模块是胸苷和胸苷单磷酸,但其他构建模块如胞苷、胞苷单磷酸和环单磷酸腺苷的产量也相当可观。比较光照条件下和黑暗条件下核苷酸和核苷酸的产量表明,在磷酸铈存在的情况下,光照会促进核碱基的形成,而核苷酸形成核苷酸的过程即使在没有光照的情况下也会发生。与其他涉及多个步骤和多个反应物的情况相比,本文描述的情况要简单得多。因此,根据奥卡姆剃刀原理,它应该引起社会的广泛关注。
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