Chandru Kuhan, Mamajanov Irena, Cleaves H James, Jia Tony Z
Space Science Center (ANGKASA), Institute of Climate Change, Level 3, Research Complex, National University of Malaysia, UKM Bangi, Selangor 43600, Malaysia.
Department of Physical Chemistry, University of Chemistry and Technology, Prague, Technicka 5, Dejvice, 16628 Prague 6, Czech Republic.
Life (Basel). 2020 Jan 19;10(1):6. doi: 10.3390/life10010006.
A variety of organic chemicals were likely available on prebiotic Earth. These derived from diverse processes including atmospheric and geochemical synthesis and extraterrestrial input, and were delivered to environments including oceans, lakes, and subaerial hot springs. Prebiotic chemistry generates both molecules used by modern organisms, such as proteinaceous amino acids, as well as many molecule types not used in biochemistry. As prebiotic chemical diversity was likely high, and the core of biochemistry uses a rather small set of common building blocks, the majority of prebiotically available organic compounds may not have been those used in modern biochemistry. Chemical evolution was unlikely to have been able to discriminate which molecules would eventually be used in biology, and instead, interactions among compounds were governed simply by abundance and chemical reactivity. Previous work has shown that likely prebiotically available α-hydroxy acids can combinatorially polymerize into polyesters that self-assemble to create new phases which are able to compartmentalize other molecule types. The unexpectedly rich complexity of hydroxy acid chemistry and the likely enormous structural diversity of prebiotic organic chemistry suggests chemical evolution could have been heavily influenced by molecules not used in contemporary biochemistry, and that there is a considerable amount of prebiotic chemistry which remains unexplored.
在生命起源之前的地球上,可能存在各种各样的有机化学物质。这些物质来源于多种过程,包括大气和地球化学合成以及地外输入,并被输送到海洋、湖泊和地表温泉等环境中。生命起源前的化学过程既产生了现代生物体所使用的分子,如蛋白质氨基酸,也产生了许多生物化学中未使用的分子类型。由于生命起源前的化学多样性可能很高,而生物化学的核心使用的是相当一小部分常见的构建模块,因此生命起源前可获得的大多数有机化合物可能并非现代生物化学中所使用的那些。化学进化不太可能能够区分哪些分子最终会被用于生物学,相反,化合物之间的相互作用仅仅由丰度和化学反应性决定。先前的研究表明,可能在生命起源前就存在的α-羟基酸可以组合聚合成聚酯,这些聚酯会自组装形成新的相,能够分隔其他分子类型。羟基酸化学出乎意料的丰富复杂性以及生命起源前有机化学可能的巨大结构多样性表明,化学进化可能受到当代生物化学中未使用的分子的严重影响,并且存在大量尚未探索的生命起源前的化学过程。