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One-step formation of oligopeptide-like molecules from Glu and Asp in hydrothermal environments

机译:在热液环境中由Glu和Asp一步形成寡肽样分子

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Biopolymer accumulation in the absence of enzymes is an essential step for the chemical evolution of primitive life-like systems, and successful simulation experiments of prebiotic biopolymer formation have suggested that oligopeptides could have formed near submarine hydrothermal vent environments on primitive earth. However, the yield and length of oligopeptides—typically limited to 6-mers—seems to be inadequate. One reason is the rapid formation of diketopiperazines (DKPs) from dipeptides. In this study, using a hydrothermal microflow reactor, we show that the one-step synthesis of oligopeptide-like molecules of length up to 20-mers proceeds from Glu and Asp. Yields of up to 0.17–0.57% were obtained in an acidic solution within 183 s at 250–310°C, as evaluated by matrix-assisted laser desorption/ionization mass spectrometry (MALDI-MS) analysis and different types of high-performance liquid chromatography (HPLC) analyses. The present study indicates that Glu and Asp may have played important roles in the chemical evolution of oligopeptide-like molecules in hydrothermal vent environments on primitive earth.
机译:在没有酶的情况下生物聚合物的积累是原始生命系统的化学进化的重要步骤,益生元生物聚合物形成的成功模拟实验表明,寡肽可能在原始地球的海底热液喷口环境附近形成。但是,寡肽的产量和长度(通常限于6-聚体)似乎不足。原因之一是由二肽快速形成二酮哌嗪(DKP)。在这项研究中,使用水热微流反应器,我们显示了长度高达20个单体的寡肽样分子的一步合成是从Glu和Asp进行的。通过基质辅助激光解吸/电离质谱(MALDI-MS)分析和不同类型的高性能液体评估,在酸性溶液中在183 s内于250-310°C的温度可获得高达0.17-0.57%的产率色谱法(HPLC)分析。本研究表明,Glu和Asp在原始地球上的热液喷口环境中可能在寡肽样分子的化学演化中发挥了重要作用。

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