Université de Lyon, Université Claude Bernard Lyon 1, CNRS, Institut de Chimie et Biochimie Moléculaires et Supramoléculaires (UMR 5246), Villeurbanne, France.
Laboratoire des biomolécules, LBM, Département de chimie, École normale supérieure, PSL University, Sorbonne Université, CNRS, Paris, France.
Astrobiology. 2023 Dec;23(12):1368-1382. doi: 10.1089/ast.2023.0007. Epub 2023 Oct 20.
Homochirality is one of the signatures of life. Numerous geological and prebiotic chemistry studies have proved that disordered soups containing small organic molecules, gases, liquids, and minerals (such as those containing phosphorous) yielded racemic mixtures of building blocks for biomolecule assembly. Polymers obtained from these bricks should have been enantiopure with functional properties similar to modern biomolecules or heterochiral with some functions such as catalyzing a chemical transformation unspecifically. Up until now, no clues have been found as to how symmetry breaking occurred. In this review, we highlight the principal achievements regarding the emergence of homochirality during the prebiotic synthesis of building blocks. Furthermore, we tried to focus on approaches based on prebiotic systems chemistry (bottom-up) and laboratory scales to simulate plausible prebiotic messy environments for the emergence of life. We aim with this review to assemble, even partially, the puzzle pieces of the origin of life regarding the relevant phenomenon of homochiral symmetry breaking.
手性的单一性是生命的特征之一。大量的地质和前生物化学研究证明,无序汤含有小有机分子、气体、液体和矿物质(如含磷)会产生用于生物分子组装的手性混合物。从这些砖中获得的聚合物应该具有与现代生物分子相似的对映纯功能特性,或者具有一些功能,例如非特异性地催化化学转化的杂手性。到目前为止,还没有发现对称性破缺是如何发生的线索。在这篇综述中,我们重点介绍了前生物合成砌块过程中手性单一性出现的主要成果。此外,我们试图关注基于前生物系统化学(自下而上)和实验室规模的方法,以模拟可能的生命出现前的混乱环境。我们希望通过这篇综述,即使是部分地,组装生命起源的相关现象,即手性对称性破缺的难题。