Institut de Chimie de Nice, Université Côte d'Azur, CNRS, UMR 7272, 06108 Nice, France.
L'Orme des Merisiers, Synchrotron SOLEIL, BP 48 Saint Aubin, 91192 Gif-sur-Yvette, France.
Biochim Biophys Acta Proteins Proteom. 2018 Jul;1866(7):743-758. doi: 10.1016/j.bbapap.2018.01.004. Epub 2018 Jan 31.
Living organisms on the Earth almost exclusively use l-amino acids for the molecular architecture of proteins. The biological occurrence of d-amino acids is rare, although their functions in various organisms are being gradually understood. A possible explanation for the origin of biomolecular homochirality is the delivery of enantioenriched molecules via extraterrestrial bodies, such as asteroids and comets on early Earth. For the asymmetric formation of amino acids and their precursor molecules in interstellar environments, the interaction with circularly polarized photons is considered to have played a potential role in causing chiral asymmetry. In this review, we summarize recent progress in the investigation of chirality transfer from chiral photons to amino acids involving the two major processes of asymmetric photolysis and asymmetric synthesis. We will discuss analytical data on cometary and meteoritic amino acids and their potential impact delivery to the early Earth. The ongoing and future ambitious space missions, Hayabusa2, OSIRIS-REx, ExoMars 2020, and MMX, are scheduled to provide new insights into the chirality of extraterrestrial organic molecules and their potential relation to the terrestrial homochirality. This article is part of a Special Issue entitled: d-Amino acids: biology in the mirror, edited by Dr. Loredano Pollegioni, Dr. Jean-Pierre Mothet and Dr. Molla Gianluca.
地球上的生物几乎完全使用 L-氨基酸作为蛋白质的分子结构。尽管 D-氨基酸在各种生物中的功能正逐渐被理解,但它们在生物中的存在却很少见。生物分子手性起源的一个可能解释是,通过诸如小行星和彗星等外星体将对映体富集的分子输送到早期地球上。对于星际环境中氨基酸及其前体分子的不对称形成,与圆偏振光子的相互作用被认为在导致手性不对称方面发挥了潜在作用。在这篇综述中,我们总结了近年来在手性光子向氨基酸的转移研究方面的最新进展,其中涉及两个主要过程:不对称光解和不对称合成。我们将讨论关于彗星和陨石氨基酸的分析数据,以及它们对早期地球潜在的输送影响。正在进行的和未来雄心勃勃的太空任务,如隼鸟 2 号、OSIRIS-REx、ExoMars 2020 和 MMX,计划提供对外星有机分子手性及其与地球手性潜在关系的新见解。本文是由 Loredano Pollegioni 博士、Jean-Pierre Mothet 博士和 Molla Gianluca 博士编辑的特刊“d-氨基酸:镜像中的生物学”的一部分。