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首页> 外文期刊>Angewandte Chemie >Molecular Chirality in Meteorites and Interstellar Ices, and the Chirality Experiment on Board the ESA Cometary Rosetta Mission
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Molecular Chirality in Meteorites and Interstellar Ices, and the Chirality Experiment on Board the ESA Cometary Rosetta Mission

机译:陨石和星际冰中的分子手性,以及ESA彗星罗塞塔号任务上的手性实验

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摘要

Life, as it is known to us, uses exclusively L-amino acid and D-sugar enantiomers for the molecular architecture of proteins and nucleic acids. This Minireview explores current models of the original symmetry-breaking influence that led to the exogenic delivery to Earth of prebiotic molecules with a slight enantiomeric excess. We provide a short overview of enantiomeric enhancements detected in bodies of extraterrestrial origin, such as meteorites, and interstellar ices simulated in the laboratory. Data are interpreted from different points of view, namely, photochirogenesis, parity violation in the weak nuclear interaction, and enantioenrichment through phase transitions. Photochemically induced enantiomeric imbalances are discussed more specifically in the topical context of the "chirality module" on board the cometary Rosetta spacecraft of the ESA. This device will perform the first enantioselective in situ analyses of samples taken from a cometary nucleus.
机译:众所周知,生命只使用L-氨基酸和D-糖对映体来构建蛋白质和核酸的分子结构。这篇微型综述探讨了导致对称性破损的当前模型,这些模型导致对映体过量轻微的益生元分子向地球外生传递。我们简要概述了在地球外起源的物体中检测到的对映体增强,例如陨石和实验室模拟的星际冰。数据从不同的角度进行解释,即光化学发生,弱核相互作用中的奇偶校验违反和通过相变的对映富集。在ESA的彗星罗塞塔(Rosetta)航天器上“手性模块”的主题背景下,更具体地讨论了光化学诱导的对映体不平衡。该设备将对从彗核提取的样品进行首次对映选择性原位分析。

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