A liquid crystal world for the origins of life.

IF 3.4 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Tony Z Jia, Tommaso Bellini, Noel Clark, Tommaso P Fraccia
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引用次数: 3

Abstract

Nucleic acids (NAs) in modern biology accomplish a variety of tasks, and the emergence of primitive nucleic acids is broadly recognized as a crucial step for the emergence of life. While modern NAs have been optimized by evolution to accomplish various biological functions, such as catalysis or transmission of genetic information, primitive NAs could have emerged and been selected based on more rudimental chemical-physical properties, such as their propensity to self-assemble into supramolecular structures. One such supramolecular structure available to primitive NAs are liquid crystal (LC) phases, which are the outcome of the collective behavior of short DNA or RNA oligomers or monomers that self-assemble into linear aggregates by combinations of pairing and stacking. Formation of NA LCs could have provided many essential advantages for a primitive evolving system, including the selection of potential genetic polymers based on structure, protection by compartmentalization, elongation, and recombination by enhanced abiotic ligation. Here, we review recent studies on NA LC assembly, structure, and functions with potential prebiotic relevance. Finally, we discuss environmental or geological conditions on early Earth that could have promoted (or inhibited) primitive NA LC formation and highlight future investigation axes essential to further understanding of how LCs could have contributed to the emergence of life.
生命起源的液晶世界。
核酸(NAs)在现代生物学中完成了多种任务,原始核酸的出现被广泛认为是生命出现的关键一步。虽然现代NAs已经经过进化优化以完成各种生物功能,如催化或遗传信息的传递,但原始NAs可能已经出现并基于更基本的化学物理特性被选择,例如它们自组装成超分子结构的倾向。原始NAs可用的一种超分子结构是液晶(LC)相,它是短DNA或RNA低聚物或单体集体行为的结果,通过配对和堆叠的组合自组装成线性聚集体。NA LCs的形成可能为原始进化系统提供了许多必要的优势,包括基于结构的潜在遗传聚合物的选择,区隔化的保护,延伸和增强的非生物连接的重组。在此,我们对NA - LC的组装、结构和功能及其潜在的益生元相关性进行了综述。最后,我们讨论了早期地球上可能促进(或抑制)原始NA LC形成的环境或地质条件,并强调了未来的研究方向,这对于进一步了解LC如何促进生命的出现至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
7.70
自引率
0.00%
发文量
94
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