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5-取代尿嘧啶的益生元合成:RNA世界与DNA-蛋白质世界之间的桥梁。

Prebiotic synthesis of 5-substituted uracils: a bridge between the RNA world and the DNA-protein world.

作者信息

Robertson M P, Miller S L

机构信息

Department of Chemistry and Biochemistry, University of California, San Diego, La Jolla 92093, USA.

出版信息

Science. 1995 May 5;268(5211):702-5. doi: 10.1126/science.7732378.

Abstract

Under prebiotic conditions, formaldehyde adds to uracil at the C-5 position to produce 5-hydroxymethyluracil with favorable rates and equilibria. Hydroxymethyluracil adds a variety of nucleophiles, such as ammonia, glycine, guanidine, hydrogen sulfide, hydrogen cyanide, imidazole, indole, and phenol, to give 5-substituted uracils with the side chains of most of the 20 amino acids in proteins. These reactions are sufficiently robust that, if uracil had been present on the primitive Earth, then these substituted uracils would also have been present. The ribozymes of the RNA world would have included many of the functional groups found in proteins today, and their catalytic activities may have been considerably greater than presently assumed.

摘要

在益生元条件下,甲醛在尿嘧啶的C-5位加成,以有利的速率和平衡生成5-羟甲基尿嘧啶。羟甲基尿嘧啶可与多种亲核试剂加成,如氨、甘氨酸、胍、硫化氢、氰化氢、咪唑、吲哚和苯酚,生成带有蛋白质中20种氨基酸中大多数氨基酸侧链的5-取代尿嘧啶。这些反应足够稳定,以至于如果尿嘧啶在原始地球上存在,那么这些取代尿嘧啶也会存在。RNA世界的核酶会包含当今蛋白质中发现的许多官能团,并且它们的催化活性可能比目前所认为的要高得多。

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