Department of Biochemistry, School of Biomedical Sciences, University of Otago, Dunedin, New Zealand.
Emeritus Professor, Department of Biochemistry, School of Biomedical Sciences, University of Otago, Dunedin, New Zealand.
J Mol Evol. 2021 Dec;89(9-10):594-597. doi: 10.1007/s00239-021-10030-4. Epub 2021 Oct 11.
The Maillard reaction, a spontaneous 'one pot' reaction between amino acids and reducing sugars that occurs at low reactant concentrations and low temperatures, is a good candidate for having played a role in the origin of life on the Earth. In view of the probability that RNA and DNA were preceded by an evolutionary forerunner with a more straightforward prebiotic synthesis, it is a testament to the prescience of Oró and colleagues that, in 1975, they drew attention to the Maillard reaction, in particular evidence that melanoidin polymers (the end-product of the reaction) contain '…heterocyclic nitrogen compounds similar to the nitrogenous bases' (Nissenbaum in J Mol Evol 6:253-270, 1975). Indeed, reports of the Maillard reaction product, 2-Acetyl-6-(Hydroxymethyl)-5,6-Dihydro-4H-Pyridinone (AHDP), with a structure reminiscent of the pyrimidine nucleobase uracil, suggest the Maillard reaction might have played a key role in the synthesis of components of a proto-RNA polymer, with AHDP and two structurally related products predicted to be similar to uracil in the latter's ability to form non-standard base pair interactions. It is possible that the primary function of these interactions was to allow molecules such as AHDP to separate out of the prebiotic chemical clutter. If this were the case, catalysis, and coding-made possible by the polymerization of proto-nucleoside monomers into linear sequence strings-would have been evolving properties.
美拉德反应是一种自发的“一锅煮”反应,发生在低反应物浓度和低温下,氨基酸和还原糖之间发生反应,是地球生命起源的一个很好的候选反应。鉴于 RNA 和 DNA 可能有一个进化前体,其前体具有更简单的前生物合成,这证明了奥罗和他的同事们具有先见之明,他们在 1975 年提请注意美拉德反应,特别是证据表明类黑精聚合物(反应的终产物)含有“......类似于含氮碱基的杂环氮化合物”(Nissenbaum 在 J Mol Evol 6:253-270, 1975 年)。事实上,美拉德反应产物 2-乙酰基-6-(羟甲基)-5,6-二氢-4H-吡啶酮(AHDP)的报告,其结构让人联想到嘧啶核苷碱基尿嘧啶,表明美拉德反应可能在原 RNA 聚合物成分的合成中发挥了关键作用,AHDP 和两种结构相关的产物在后者形成非标准碱基对相互作用的能力方面被预测与尿嘧啶相似。这些相互作用的主要功能可能是允许 AHDP 等分子从前生物化学混乱中分离出来。如果是这样,那么通过原核苷单体聚合成长链序列的催化作用和编码功能就会不断进化。