Department of Chemistry, The Scripps Research Institute, 10550 North Torrey Pines Rd, La Jolla, California 92037, USA.
J Am Chem Soc. 2012 Feb 22;134(7):3577-89. doi: 10.1021/ja211383c. Epub 2012 Feb 10.
In the context of a "glyoxylate scenario" of primordial metabolism, the reactions of dihydroxyfumarate (DHF) with reactive small molecule aldehydes (e.g., glyoxylate, formaldehyde, glycolaldehyde, and glyceraldehyde) in water were investigated and shown to form dihydroxyacetone, tetrulose, and the two pentuloses, with almost quantitative conversion. The practically clean and selective formation of ketoses in these reactions, with no detectable admixture of aldoses, stands in stark contrast to the formose reaction, where a complex mixture of linear and branched aldoses and ketoses are produced. These results suggest that the reaction of DHF with aldehydes could constitute a reasonable pathway for the formation of carbohydrates and allow for alternative potential prebiotic scenarios to the formose reaction to be considered.
在原始代谢的“乙醛酸场景”中,研究了反式二羟富马酸(DHF)与水中的反应性小分子醛(如乙醛酸、甲醛、甘油醛和甘油醛)的反应,结果表明几乎定量地形成了二羟丙酮、塔罗糖和两种戊糖,即赤藓酮糖和核糖。这些反应中酮糖的实际清洁和选择性形成,没有检测到醛糖的混合物,与福尔摩斯反应形成鲜明对比,在福尔摩斯反应中,生成了复杂的线性和支链醛糖和酮糖混合物。这些结果表明,DHF 与醛的反应可能构成碳水化合物形成的合理途径,并允许考虑替代潜在的前生物福尔摩斯反应情景。