School of Chemistry and Biochemistry, Georgia Institute of Technology, Atlanta, Georgia, 30332, USA.
Earth-Life Science Institute, Tokyo Institute of Technology, 2-12-1-IE-1 Ookayama, Meguro-ku, Tokyo, 152-8550, Japan.
Chemistry. 2023 Feb 7;29(8):e202202816. doi: 10.1002/chem.202202816. Epub 2022 Dec 19.
The prebiotic generation of sugars in the context of origins of life studies is of considerable interest. Among the important intramolecular processes of sugars are carbonyl migrations and accompanying epimerizations. Herein we describe the carbonyl migration-epimerization process occurring down the entire carbon chain of chirally pure d-tetroses sugars under mild conditions. Employing chirally pure 1- C-erythrose, 4- C-erythrose and 1- C-threose, we (1) identify all the species formed as the carbonyl migrates down the four-carbon chain and (2) assess the rates associated with the production of each of these species. Competing aldol reactions and oxidative fragmentation processes were also observed. Further observations of self-condensation of glycolaldehyde mainly yielding 2-keto-hexoses (sorbose and tagatose) and tetrulose also provides a basis for understanding the effect of carbonyl migrations on the product distribution in plausible prebiotic scenarios.
在生命起源研究中,前体糖的生成具有相当大的研究意义。在糖的重要分子内过程中,包括羰基迁移和伴随的差向异构化。在此,我们描述了在温和条件下,手性纯 d-四糖糖沿整个碳链发生的羰基迁移-差向异构化过程。使用手性纯 1-C-赤藓糖、4-C-赤藓糖和 1-C-苏糖,我们 (1) 确定了羰基沿四碳链迁移时形成的所有物种,以及 (2) 评估了每种产物的生成速率。还观察到了竞争的醛醇缩合反应和氧化断裂过程。乙二醛的自缩合反应主要生成 2-酮己糖(山梨糖和塔格糖)和四醇,这也为理解羰基迁移对类似原始条件下产物分布的影响提供了依据。