Department of Chemistry, Zhejiang University, Hangzhou, 310027, China.
College of Information Science and Electronic Engineering, Zhejiang University, Hangzhou, 310027, China.
Chemistry. 2024 Jul 25;30(42):e202401809. doi: 10.1002/chem.202401809. Epub 2024 Jul 8.
The abiotic synthesis of peptides, widely regarded as one of the key chemical reactions on the prebiotic Earth, is thermodynamically constrained in solution. Herein, a simulation of the lightning phenomenon on the sea surface using bubble bursting and arc plasma under ambient conditions enables dipeptide formation of six amino acids with conversion ratios ranging from 2.6 % to 25.5 %. Additionally, we observed the formation of biologically active tripeptides and investigated the stereoselectivity of the dipeptide formation reaction. By utilizing a mixture of 20 amino acids in the reaction, 102 possible dipeptides were generated. These results establish experimental constructions to mimic achievable prebiotic conditions and provide a credible pathway for endogenous biopolymer synthesis on prebiotic Earth.
非生物合成肽,被广泛认为是前生物地球化学中关键的化学反应之一,在溶液中受到热力学限制。在此,通过在环境条件下利用气泡破裂和电弧等离子体模拟海面闪电现象,实现了六种氨基酸的二肽形成,转化率范围为 2.6%至 25.5%。此外,我们观察到生物活性三肽的形成,并研究了二肽形成反应的立体选择性。通过在反应中使用 20 种氨基酸的混合物,生成了 102 种可能的二肽。这些结果建立了模拟可实现前生物条件的实验构建,并为前生物地球上内源性生物聚合物合成提供了可信途径。