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使用硫代酸的氧化酰化反应。

Oxidative acylation using thioacids.

作者信息

Liu R, Orgel L E

机构信息

The Salk Institute for Biological Studies, San Diego, California 92186, USA.

出版信息

Nature. 1997 Sep 4;389(6646):52-4. doi: 10.1038/37944.

Abstract

Several important prebiotic reactions, including the coupling of amino acids into polypeptides by the formation of amide linkages, involve acylation. Theae reactions present a challenge to the understanding of prebiotic synthesis. Condensation reactions relying on dehydrating agents are either inefficient in aqueous solution or require strongly acidic conditions and high temperatures. Activated amino acids such as thioester derivatives have therefore been suggested as likely substrates for prebiotic peptide synthesis. Here we propose a closely related route to amide bond formation involving oxidative acylation by thioacids. We find that phenylalanine, leucine and phenylphosphate are acylated efficiently in aqueous solution by thioacetic acid and an oxidizing agent. From a prebiotic point of view, oxidative acylation has the advantage of proceeding efficiently in solution and under mild conditions. We anticipate that oxidative acylation should prove to be a general method for activating carboxylic acids, including amino acids.

摘要

几个重要的前体生物化学反应,包括通过形成酰胺键将氨基酸偶联成多肽,都涉及酰化反应。这些反应对理解前体生物合成提出了挑战。依赖脱水剂的缩合反应在水溶液中效率低下,或者需要强酸性条件和高温。因此,诸如硫酯衍生物等活化氨基酸被认为是前体生物肽合成的可能底物。在此,我们提出了一条与酰胺键形成密切相关的途径,该途径涉及硫代酸的氧化酰化反应。我们发现,在水溶液中,苯丙氨酸、亮氨酸和苯磷酸盐能被硫代乙酸和一种氧化剂有效地酰化。从前体生物的角度来看,氧化酰化具有在溶液中及温和条件下高效进行的优势。我们预计氧化酰化将被证明是活化羧酸(包括氨基酸)的通用方法。

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