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Enrichment of the amino acid l-isovaline by aqueous alteration on CI and CM meteorite parent bodies

机译:通过在CI和CM陨石母体上进行水相改变来富集氨基酸1-异缬氨酸

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摘要

The distribution and enantiomeric composition of the 5-carbon (C5) amino acids found in CI-, CM-, and CR-type carbonaceous meteorites were investigated by using liquid chromatography fluorescence detection/TOF-MS coupled with o-phthaldialdehyde/N-acetyl-l-cysteine derivatization. A large l-enantiomeric excess (ee) of the α-methyl amino acid isovaline was found in the CM meteorite Murchison (lee = 18.5 ± 2.6%) and the CI meteorite Orgueil (lee = 15.2 ± 4.0%). The measured value for Murchison is the largest enantiomeric excess in any meteorite reported to date, and the Orgueil measurement of an isovaline excess has not been reported previously for this or any CI meteorite. The l-isovaline enrichments in these two carbonaceous meteorites cannot be the result of interference from other C5 amino acid isomers present in the samples, analytical biases, or terrestrial amino acid contamination. We observed no l-isovaline enrichment for the most primitive unaltered Antarctic CR meteorites EET 92042 and QUE 99177. These results are inconsistent with UV circularly polarized light as the primary mechanism for l-isovaline enrichment and indicate that amplification of a small initial isovaline asymmetry in Murchison and Orgueil occurred during an extended aqueous alteration phase on the meteorite parent bodies. The large asymmetry in isovaline and other α-dialkyl amino acids found in altered CI and CM meteorites suggests that amino acids delivered by asteroids, comets, and their fragments would have biased the Earth's prebiotic organic inventory with left-handed molecules before the origin of life.
机译:通过使用液相色谱荧光检测/ TOF-MS结合邻苯二甲醛/ N-乙酰基,研究了CI,CM和CR型碳质陨石中5碳(C5)氨基酸的分布和对映体组成。 -l-半胱氨酸衍生化。在CM陨石默奇森(lee = 18.5±2.6%)和CI陨石Orgueil(lee = 15.2±4.0%)中发现了较大的l-对映体过量(ee)α-甲基氨基酸异缬氨酸。 Murchison的测量值是迄今为止报道的任何陨石中最大的对映体过量,并且以前尚未报道过该异戊二烯或任何CI陨石对异戊酸过量的Orgueil测量。这两个碳质陨石中的L-异缬氨酸富集不能是样品中存在的其他C5氨基酸异构体的干扰,分析偏差或地面氨基酸污染的结果。我们没有观察到最原始的未改变的南极CR陨石EET 92042和QUE 99177的l-异戊酸富集。这些结果与UV圆偏振光作为l-异戊酸富集的主要机理是不一致的,并表明放大了一个小的初始异戊酸不对称性Murchison和Orgueil发生在陨石母体上延长的水蚀蚀变阶段。在改变的CI和CM陨石中发现的异缬氨酸和其他α-二烷基氨基酸的不对称性很大,这表明小行星,彗星及其碎片所传递的氨基酸在生命起源之前会偏左手分子偏向地球的益生元有机库存。

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