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前生物化学的原代谢性质。

The protometabolic nature of prebiotic chemistry.

机构信息

Department of Organic Chemistry, Universidad Autónoma de Madrid, Campus Cantoblanco, 28049, Madrid, Spain.

Biofisika Institute (CSIC, UPV/EHU), University of the Basque Country, Leioa, Spain.

出版信息

Chem Soc Rev. 2023 Oct 30;52(21):7359-7388. doi: 10.1039/d3cs00594a.

Abstract

The field of prebiotic chemistry has been dedicated over decades to finding abiotic routes towards the molecular components of life. There is nowadays a handful of prebiotically plausible scenarios that enable the laboratory synthesis of most amino acids, fatty acids, simple sugars, nucleotides and core metabolites of extant living organisms. The major bottleneck then seems to be the self-organization of those building blocks into systems that can self-sustain. The purpose of this tutorial review is having a close look, guided by experimental research, into the main synthetic pathways of prebiotic chemistry, suggesting how they could be wired through common intermediates and catalytic cycles, as well as how recursively changing conditions could help them engage in self-organized and dissipative networks/assemblies (, systems that consume chemical or physical energy from their environment to maintain their internal organization in a dynamic steady state out of equilibrium). In the article we also pay attention to the implications of this view for the emergence of homochirality. The revealed connectivity between those prebiotic routes should constitute the basis for a robust research program towards the bottom-up implementation of protometabolic systems, taken as a central part of the origins-of-life problem. In addition, this approach should foster further exploration of control mechanisms to tame the combinatorial explosion that typically occurs in mixtures of various reactive precursors, thus regulating the functional integration of their respective chemistries into self-sustaining protocellular assemblies.

摘要

几十年来,前生物化学领域一直致力于寻找非生物途径来合成生命的分子组成部分。如今,已经有一些具有前生物合理性的方案能够在实验室中合成大多数氨基酸、脂肪酸、简单糖、核苷酸和现存生物体的核心代谢物。那么,主要的瓶颈似乎是这些构建块如何自行组织成能够自我维持的系统。本教程综述的目的是通过实验研究,仔细研究前生物化学的主要合成途径,提出如何通过常见的中间体和催化循环将它们连接起来,以及递归变化的条件如何帮助它们参与自我组织和耗散网络/组装(即从环境中消耗化学或物理能量以在非平衡的动态稳定状态下维持其内部组织的系统)。在本文中,我们还关注了这种观点对同手性出现的影响。这些前生物途径之间的连通性应该构成一个稳健的研究计划的基础,该计划旨在通过自下而上的方法实现原代谢系统的实施,这被视为生命起源问题的核心部分。此外,这种方法应该促进进一步探索控制机制,以控制通常在各种反应前体混合物中发生的组合爆炸,从而调节它们各自化学物质在自我维持原细胞组装中的功能整合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/84c9/10614573/65764acda64d/d3cs00594a-s1.jpg

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