科技报告详细信息
Synthesis of Meteoritic Reaction Intermediates
Rios, Andro C ; Cooper, George
关键词: CARBONATES;    DICARBOXYLIC ACIDS;    GAS CHROMATOGRAPHY;    LIQUID CHROMATOGRAPHY;    METEORITES;    ORGANIC COMPOUNDS;    PYRUVATES;    REACTION INTERMEDIATES;    SPECTROSCOPY;    SYNTHESIS (CHEMISTRY);   
RP-ID  :  ARC-E-DAA-TN69910
学科分类:生物科学(综合)
美国|英语
来源: NASA Technical Reports Server
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【 摘 要 】
The organic compounds of carbo- naceous chondrites are structurally diverse products of the prolonged abiotic chemistry that occurred before and during the early stages of the solar system [1]. They also represent the types of prebiotic compounds that may have participated in chemical evolutionary processes that gave rise to life [2]. Pyruvic acid is a key component of primary metabolism that has recently been found in carbonaceous chondrites [3]. Its prominence in biology has inspired us to explore its chemistry and possible role in the origin of metabolism. Our laboratory investigations have found that pyruvate (the ionized form of pyruvic acid) can serve as a single-source reactant to generate what we term a pyruvate reaction network (PRN). The core of the PRN is driven by pyruvate aldol polymerization and decay reactions. These decay reactions lead to the production of stable and unstable compounds which include mono, di, and tricarboxylic acids and a variety of keto acids.Finding evidence of this reaction network in meteorites would establish that the chemistry of pyruvate did occur in a prebiotic environment. Many of the known compounds found in pyruvate reaction mixtures were originally detected in meteorite samples by Cooper et al in 2011. However, multiple synthetic origins not tied to pyruvate chemistry might also explain their meteoritic presence. Thus, a search to find compounds unique to the PRN, such as reaction intermediates, would provide stronger evidence to demonstrate its prebiotic relevance. The identity of these intermediates can only be confirmed by acquiring chemical standards, however, as most are not available commercially, they need to be accessed through chemical synthesis.
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