Sallembien Quentin, Bouteiller Laurent, Crassous Jeanne, Raynal Matthieu
Sorbonne Université, CNRS, Institut Parisien de Chimie Moléculaire, Equipe Chimie des Polymères, 4 Place Jussieu, 75005 Paris, France.
Univ Rennes, CNRS, Institut des Sciences Chimiques de Rennes, ISCR-UMR 6226, F-35000 Rennes, France.
Chem Soc Rev. 2022 May 10;51(9):3436-3476. doi: 10.1039/d1cs01179k.
The single chirality of biological molecules in terrestrial biology raises more questions than certitudes about its origin. The emergence of biological homochirality (BH) and its connection with the appearance of life have elicited a large number of theories related to the generation, amplification and preservation of a chiral bias in molecules of life under prebiotically relevant conditions. However, a global scenario is still lacking. Here, the possibility of inducing a significant chiral bias "from scratch", in the absence of pre-existing enantiomerically-enriched chemical species, will be considered first. It includes phenomena that are inherent to the nature of matter itself, such as the infinitesimal energy difference between enantiomers as a result of violation of parity in certain fundamental interactions, and physicochemical processes related to interactions between chiral organic molecules and physical fields, polarized particles, polarized spins and chiral surfaces. The spontaneous emergence of chirality in the absence of detectable chiral physical and chemical sources has recently undergone significant advances thanks to the deracemization of conglomerates through Viedma ripening and asymmetric auto-catalysis with the Soai reaction. All these phenomena are commonly discussed as plausible sources of asymmetry under prebiotic conditions and are potentially accountable for the primeval chiral bias in molecules of life. Then, several scenarios will be discussed that are aimed to reflect the different debates about the emergence of BH: extra-terrestrial or terrestrial origin (where?), nature of the mechanisms leading to the propagation and enhancement of the primeval chiral bias (how?) and temporal sequence between chemical homochirality, BH and life emergence (when?). Intense and ongoing theories regarding the emergence of optically pure molecules at different moments of the evolution process towards life, . at the levels of building blocks of Life, of the instructed or functional polymers, or even later at the stage of more elaborated chemical systems, will be critically discussed. The underlying principles and the experimental evidence will be commented for each scenario with particular attention on those leading to the induction and enhancement of enantiomeric excesses in proteinogenic amino acids, natural sugars, and their intermediates or derivatives. The aim of this review is to propose an updated and timely synopsis in order to stimulate new efforts in this interdisciplinary field.
地球生物中生物分子的单一手性引发的问题比其起源的确切解释更多。生物同手性(BH)的出现及其与生命出现的联系引发了大量与在与生命起源前相关条件下生命分子中手性偏好的产生、放大和保存有关的理论。然而,目前仍缺乏一个全面的设想。在此,将首先考虑在不存在预先存在的对映体富集化学物种的情况下“从头开始”诱导显著手性偏好的可能性。这包括物质本身性质所固有的现象,例如由于某些基本相互作用中宇称不守恒导致对映体之间的微小能量差异,以及与手性有机分子和物理场、极化粒子、极化自旋和手性表面之间相互作用相关的物理化学过程。由于通过维德马熟化使聚集体外消旋以及索艾反应的不对称自催化作用,在没有可检测到手性物理和化学源的情况下手性的自发出现最近取得了重大进展。所有这些现象通常被讨论为生命起源前条件下不对称性的合理来源,并且可能是生命分子中原始手性偏好的原因。然后,将讨论几种设想,旨在反映关于BH出现的不同争论:外星起源还是地球起源(在哪里?)、导致原始手性偏好传播和增强的机制的性质(如何?)以及化学同手性、BH和生命出现之间的时间顺序(何时?)。将对关于在向生命进化过程的不同时刻出现光学纯分子的激烈且持续的理论进行批判性讨论,这些时刻包括生命的构建模块、有指导的或功能性聚合物的层面,甚至更晚在更复杂化学系统的阶段。将对每种设想的基本原理和实验证据进行评论,特别关注那些导致蛋白质ogenic氨基酸、天然糖及其中间体或衍生物中对映体过量诱导和增强的原理和证据。本综述的目的是提出一个更新且及时的概述,以激发这一跨学科领域的新研究努力。