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高效、严格区域选择性的益生菌嘌呤核苷形成途径。

A high-yielding, strictly regioselective prebiotic purine nucleoside formation pathway.

机构信息

Ludwig-Maximilians-Universität München, Department für Chemie, D-81377 Munich, Germany.

出版信息

Science. 2016 May 13;352(6287):833-6. doi: 10.1126/science.aad2808.

Abstract

The origin of life is believed to have started with prebiotic molecules reacting along unidentified pathways to produce key molecules such as nucleosides. To date, a single prebiotic pathway to purine nucleosides had been proposed. It is considered to be inefficient due to missing regioselectivity and low yields. We report that the condensation of formamidopyrimidines (FaPys) with sugars provides the natural N-9 nucleosides with extreme regioselectivity and in good yields (60%). The FaPys are available from formic acid and aminopyrimidines, which are in turn available from prebiotic molecules that were also detected during the Rosetta comet mission. This nucleoside formation pathway can be fused to sugar-forming reactions to produce pentosides, providing a plausible scenario of how purine nucleosides may have formed under prebiotic conditions.

摘要

生命的起源被认为始于前生物分子沿着未识别的途径反应,以产生核苷等关键分子。迄今为止,仅提出了一条嘌呤核苷的前生物途径。由于缺乏区域选择性和低产率,它被认为效率低下。我们报告称,与糖缩合的形式氨基嘧啶(FaPys)提供了具有极端区域选择性和良好产率(60%)的天然 N-9 核苷。FaPys 可从甲酸和氨基嘧啶获得,而氨基嘧啶又可从前生物分子获得,这些前生物分子也在罗塞塔彗星任务中被检测到。该核苷形成途径可以与糖形成反应融合,以产生戊糖苷,为嘌呤核苷如何在前生物条件下形成提供了一个合理的情景。

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