Omran Arthur, Gonzalez Asbell, Menor-Salvan Cesar, Gaylor Michael, Wang Jing, Leszczynski Jerzy, Feng Tian
Department of Chemistry, University of North Florida, Jacksonville, FL 32224, USA.
Department of Geosciences, University of South Florida, Tampa, FL 33620, USA.
Life (Basel). 2023 May 31;13(6):1297. doi: 10.3390/life13061297.
The formose reaction is a plausible prebiotic chemistry, famed for its production of sugars. In this work, we demonstrate that the Cannizzaro process is the dominant process in the formose reaction under many different conditions, thus necessitating a catalyst for the formose reaction under various environmental circumstances. The investigated formose reactions produce primarily organic acids associated with metabolism, a protometabolic system, and yield very little sugar left over. This is due to many of the acids forming from the degradation and Cannizaro reactions of many of the sugars produced during the formose reaction. We also show the heterogeneous Lewis-acid-based catalysis of the formose reaction by mineral systems associated with serpentinization. The minerals that showed catalytic activity include olivine, serpentinite, and calcium, and magnesium minerals including dolomite, calcite, and our Ca/Mg-chemical gardens. In addition, computational studies were performed for the first step of the formose reaction to investigate the reaction of formaldehyde, to either form methanol and formic acid under a Cannizzaro reaction or to react to form glycolaldehyde. Here, we postulate that serpentinization is therefore the startup process necessary to kick off a simple proto metabolic system-the formose protometabolic system.
福莫司反应是一种合理的益生元前化学过程,以其产糖能力而闻名。在这项工作中,我们证明了坎尼扎罗过程在许多不同条件下是福莫司反应中的主导过程,因此在各种环境条件下福莫司反应都需要一种催化剂。所研究的福莫司反应主要产生与新陈代谢相关的有机酸,即原代谢系统,剩余的糖产量很少。这是因为许多酸是由福莫司反应过程中产生的许多糖的降解和坎尼扎罗反应形成的。我们还展示了与蛇纹石化相关的矿物系统对福莫司反应的多相路易斯酸催化作用。表现出催化活性的矿物包括橄榄石、蛇纹岩以及钙和镁的矿物,如白云石、方解石和我们的钙/镁化学花园。此外,对福莫司反应的第一步进行了计算研究,以研究甲醛在坎尼扎罗反应下形成甲醇和甲酸或反应形成乙醇醛的反应。在此,我们假设蛇纹石化因此是启动一个简单原代谢系统——福莫司原代谢系统所必需的起始过程。