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Detection and formation scenario of citric acid, pyruvic acid, and other possible metabolism precursors in carbonaceous meteorites

机译:碳质陨石中柠檬酸,丙酮酸和其他可能的代谢前体的检测和形成情况

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摘要

Carbonaceous meteorites deliver a variety of organic compounds to Earth that may have played a role in the origin and/or evolution of biochemical pathways. Some apparently ancient and critical metabolic processes require several compounds, some of which are relatively labile such as keto acids. Therefore, a prebiotic setting for any such individual process would have required either a continuous distant source for the entire suite of intact precursor molecules and/or an energetic and compact local synthesis, particularly of the more fragile members. To date, compounds such as pyruvic acid, oxaloacetic acid, citric acid, isocitric acid, and α-ketoglutaric acid (all members of the citric acid cycle) have not been identified in extraterrestrial sources or, as a group, as part of a “one pot” suite of compounds synthesized under plausibly prebiotic conditions. We have identified these compounds and others in carbonaceous meteorites and/or as low temperature (laboratory) reaction products of pyruvic acid. In meteorites, we observe many as part of three newly reported classes of compounds: keto acids (pyruvic acid and homologs), hydroxy tricarboxylic acids (citric acid and homologs), and tricarboxylic acids. Laboratory syntheses using 13C-labeled reactants demonstrate that one compound alone, pyruvic acid, can produce several (nonenzymatic) members of the citric acid cycle including oxaloacetic acid. The isotopic composition of some of the meteoritic keto acids points to interstellar or presolar origins, indicating that such compounds might also exist in other planetary systems.
机译:碳质陨石向地球输送了各种可能在生化途径的起源和/或进化中起作用的有机化合物。一些显然古老且关键的代谢过程需要几种化合物,其中一些相对不稳定,例如酮酸。因此,对于任何这样的单独过程而言,益生元的设置要么需要用于完整的完整前体分子套件的连续的遥远来源和/或需要能量充沛且紧凑的局部合成,尤其是较脆弱的成员。迄今为止,尚未在地外来源中或作为一个整体将“丙酮酸”,“草酰乙酸”,“柠檬酸”,“异柠檬酸”和“α-酮戊二酸”(柠檬酸循环的所有成员)等化合物鉴定为“一锅”在似宜的益生元条件下合成的化合物。我们已经在碳质陨石和/或丙酮酸的低温(实验室)反应产物中鉴定了这些化合物和其他化合物。在陨石中,我们观察到许多作为新报告的三类化合物的一部分:酮酸(丙酮酸和同系物),羟基三羧酸(柠檬酸和同系物)和三羧酸。使用13C标记的反应物进行的实验室合成表明,仅一种化合物丙酮酸可以产生柠檬酸循环的多个(非酶促)成员,包括草酰乙酸。一些陨石酮酸的同位素组成指向星际或太阳前起源,表明此类化合物也可能存在于其他行星系统中。

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