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PNAS Plus: Enantiomer excesses of rare and common sugar derivatives in carbonaceous meteorites

机译:PNAS Plus:碳质陨石中稀有和常见糖衍生物的对映体过量

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摘要

Biological polymers such as nucleic acids and proteins are constructed of only one—the d or l—of the two possible nonsuperimposable mirror images (enantiomers) of selected organic compounds. However, before the advent of life, it is generally assumed that chemical reactions produced 50:50 (racemic) mixtures of enantiomers, as evidenced by common abiotic laboratory syntheses. Carbonaceous meteorites contain clues to prebiotic chemistry because they preserve a record of some of the Solar System’s earliest (∼4.5 Gy) chemical and physical processes. In multiple carbonaceous meteorites, we show that both rare and common sugar monoacids (aldonic acids) contain significant excesses of the d enantiomer, whereas other (comparable) sugar acids and sugar alcohols are racemic. Although the proposed origins of such excesses are still tentative, the findings imply that meteoritic compounds and/or the processes that operated on meteoritic precursors may have played an ancient role in the enantiomer composition of life’s carbohydrate-related biopolymers.
机译:诸如核酸和蛋白质之类的生物聚合物仅由所选有机化合物的两个可能的不可重叠镜像(对映异构体)中的一个(d或l)构成。然而,在生命出现之前,通常假定化学反应产生了50:50(外消旋)对映体混合物,这是常见的非生物实验室合成所证明的。碳质陨石包含了益生元化学的线索,因为它们保留了太阳系最早的一些化学和物理过程(约4.5 Gy)的记录。在多种碳质陨石中,我们发现稀有和常见的糖单酸(醛糖酸)都含有显着过量的d对映体,而其他(可比)糖酸和糖醇是外消旋的。尽管提议的这种过量的起源仍然是暂时的,但研究结果表明,陨石化合物和/或对陨石前体起作用的过程可能在生命中与碳水化合物有关的生物聚合物的对映异构体组成中起着古老的作用。

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