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糖驱动的3,5(6)-二甲基吡嗪-2-酮益生元合成:一种原始复制过程中可能的核碱基

Sugar-driven prebiotic synthesis of 3,5(6)-dimethylpyrazin-2-one: a possible nucleobase of a primitive replication process.

作者信息

Weber Arthur L

机构信息

SETI Institute, NASA Ames Research Center, Mail Stop 239-4, Moffett Field, CA 94035-1000, USA.

出版信息

Orig Life Evol Biosph. 2008 Aug;38(4):279-92. doi: 10.1007/s11084-008-9141-6. Epub 2008 Jun 26.

Abstract

Reaction of glyceraldehyde with alanine amide (or ammonia) under anaerobic aqueous conditions yielded 3,5(6)-dimethylpyrazin-2-one that is considered a possible complementary residue of a primitive replicating molecule that preceded RNA. Synthesis of the dimethylpyrazin-2-one isomers under mild aqueous conditions (65 degrees C, pH 5.5) from 100 mM glyceraldehyde and alanine amide (or ammonia) was complete in about 5 days. This synthesis using 25 mM glyceraldehyde and alanine amide gave a total pyrazinone yield of 9.3% consisting of 42% of the 3,5-dimethylprazin-2-one isomer and 58% of the 3,6-dimethylpyrazin-2-one isomer. The related synthesis of the dimethylpyrazin-2-one isomers from glyceraldehyde and ammonia was about 200-fold less efficient than the alanine amide reaction. This synthetic process is considered a reasonable model of origin-of-life chemistry because it uses plausible prebiotic substrates, and resembles modern biosynthesis by employing the energized carbon groups of sugars to drive the synthesis of small organic molecules. Possible sugar-driven pathways for the prebiotic synthesis of polymerizable 2-pyrazinone monomers are discussed.

摘要

在厌氧水性条件下,甘油醛与丙氨酸酰胺(或氨)反应生成3,5(6)-二甲基吡嗪-2-酮,该物质被认为是先于RNA的原始复制分子的一种可能的互补残基。在温和的水性条件(65摄氏度,pH 5.5)下,由100 mM甘油醛和丙氨酸酰胺(或氨)合成二甲基吡嗪-2-酮异构体的反应大约在5天内完成。使用25 mM甘油醛和丙氨酸酰胺进行的这种合成,吡嗪酮的总产率为9.3%,其中3,5-二甲基吡嗪-2-酮异构体占42%,3,6-二甲基吡嗪-2-酮异构体占58%。由甘油醛和氨合成二甲基吡嗪-2-酮异构体的相关反应效率比丙氨酸酰胺反应低约200倍。这个合成过程被认为是生命起源化学的一个合理模型,因为它使用了看似合理的益生元底物,并且通过利用糖的带能碳基团来驱动小分子的合成,类似于现代生物合成。文中还讨论了可聚合的2-吡嗪酮单体的益生元合成中可能的糖驱动途径。

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