Isotopic evidence for extraterrestrial non-racemic amino acids in the Murchison meteorite
- PMID: 9305838
- DOI: 10.1038/38460
Isotopic evidence for extraterrestrial non-racemic amino acids in the Murchison meteorite
Abstract
Many amino acids contain an asymmetric centre, occurring as laevorotatory, L, or dextrorotatory, D, compounds. It is generally assumed that abiotic synthesis of amino acids on the early Earth resulted in racemic mixtures (L- and D-enantiomers in equal abundance). But the origin of life required, owing to conformational constraints, the almost exclusive selection of either L- or D-enantiomers, and the question of why living systems on the Earth consist of L-enantiomers rather than D-enantiomers is unresolved. A substantial fraction of the organic compounds on the early Earth may have been derived from comet and meteorite impacts. It has been reported previously that amino acids in the Murchison meteorite exhibit an excess of L-enantiomers, raising the possibility that a similar excess was present in the initial inventory of organic compounds on the Earth. The stable carbon isotope compositions of individual amino acids in Murchison support an extraterrestrial origin -- rather than a terrestrial overprint of biological amino acids-although reservations have persisted. Here we show that individual amino-acid enantiomers from Murchison are enriched in 15N relative to their terrestrial counterparts, so confirming an extraterrestrial source for an L-enantiomer excess in the Solar System that may predate the origin of life on the Earth.
Comment in
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Origins of life. A left-handed solar system?Nature. 1997 Sep 18;389(6648):234-5. doi: 10.1038/38392. Nature. 1997. PMID: 9305833 No abstract available.
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Extraterrestrial handedness.Nature. 1997 Oct 23;389(6653):804. doi: 10.1038/39777. Nature. 1997. PMID: 9349811 No abstract available.
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Alanine enantiomers in the Murchison meteorite.Nature. 1998 Jul 16;394(6690):236. doi: 10.1038/28306. Nature. 1998. PMID: 9685155 No abstract available.
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