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基于二氧化钛的柠檬酸循环中间产物的光化学合成。

Photochemical synthesis of citric acid cycle intermediates based on titanium dioxide.

机构信息

Department of Agrobiology and Agrochemistry, University of Tuscia, Viterbo, Italy.

出版信息

Astrobiology. 2011 Oct;11(8):815-24. doi: 10.1089/ast.2011.0652.

Abstract

The emergence of the citric acid cycle is one of the most remarkable occurrences with regard to understanding the origin and evolution of metabolic pathways. Although the chemical steps of the cycle are preserved intact throughout nature, diverse organisms make wide use of its chemistry, and in some cases organisms use only a selected portion of the cycle. However, the origins of this cycle would have arisen in the more primitive anaerobic organism or even back in the proto-metabolism, which likely arose spontaneously under favorable prebiotic chemical conditions. In this context, we report that UV irradiation of formamide in the presence of titanium dioxide afforded 6 of the 11 carboxylic acid intermediates of the reductive version of the citric acid cycle. Since this cycle is the central metabolic pathway of contemporary biology, this report highlights the role of photochemical processes in the origin of the metabolic apparatus.

摘要

柠檬酸循环的出现是理解代谢途径起源和进化的最显著事件之一。尽管循环的化学步骤在自然界中完整保存,但不同的生物体广泛利用其化学性质,在某些情况下,生物体仅使用循环的一部分。然而,这个循环的起源可能出现在更原始的厌氧生物中,甚至可以追溯到原始代谢时期,在有利的前生物化学条件下,原始代谢可能自发出现。在这种情况下,我们报告说,在二氧化钛存在下,对甲酰胺进行紫外线照射,得到了还原型柠檬酸循环的 11 个羧酸中间产物中的 6 个。由于这个循环是当代生物学的中心代谢途径,这一报告强调了光化学过程在代谢装置起源中的作用。

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