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小分子益生元合成的现状。

Current status of the prebiotic synthesis of small molecules.

作者信息

Miller S L

机构信息

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

出版信息

Chem Scr. 1986;26B:5-11.

Abstract

The prebiotic synthesis of small molecules has been accomplished using various simulated atmospheres with CH4, N2, and NH3, H2O being the most effective, but H2, CO, N2, H2O and H2, CO2, N2, H2O also give good yields of organic compounds provided H2/CO > 1 and H2/CO2 > 2. The spark discharge is a very effective source of energy in such experiments, because it is a good source of HCN. Ultraviolet light would also have been important on the primitive earth. Almost all prebiotic amino acids are made by the hydrolysis of an amino nitrile formed from an aldehyde, NH3 and HCN (Strecker synthesis). There are reasonable prebiotic syntheses worked out for the twenty amino acids that occur in proteins, with the exception of lysine, arginine and histidine. The purines are derived from the polymerization of HCN, and the precursor of the pyrimidines is cyanoacetylene. The sugars (including ribose), would have been formed from the base catalyzed polymerization of formaldehyde. There is no good prebiotic synthesis of straight chain fatty acids. Of the vitamin coenzymes, only nicotinic acid has been synthesized under prebiotic conditions. Many of the molecules that are produced in these simulated primitive earth experiments are found in a group of meteorites that contain organic compounds, called the carbonaceous chondrites. Since such prebiotic syntheses took place on the parent body of the carbonaceous chondrites, generally thought to be an asteroid, it is plausible, but not proved, that such syntheses took place on the primitive earth, and that the first living organisms were formed out of these compounds.

摘要

利用含有甲烷、氮气、氨气和水的各种模拟大气已经实现了小分子的益生元合成,其中水是最有效的,但只要氢气/一氧化碳>1且氢气/二氧化碳>2,氢气、一氧化碳、氮气、水以及氢气、二氧化碳、氮气、水也能产生高产率的有机化合物。在这类实验中,火花放电是一种非常有效的能量来源,因为它是氢氰酸的良好来源。紫外线在原始地球上也很重要。几乎所有的益生元氨基酸都是由醛、氨气和氢氰酸形成的氨基腈水解产生的(斯特雷克合成法)。除赖氨酸、精氨酸和组氨酸外,已为蛋白质中出现的20种氨基酸设计出了合理的益生元合成方法。嘌呤来源于氢氰酸的聚合,嘧啶的前体是氰基乙炔。糖类(包括核糖)是由甲醛在碱催化下聚合形成的。目前还没有很好的直链脂肪酸益生元合成方法。在益生元条件下,仅合成了维生素辅酶中的烟酸。在这些模拟原始地球实验中产生的许多分子在一组含有有机化合物的陨石中被发现,这些陨石被称为碳质球粒陨石。由于这种益生元合成发生在碳质球粒陨石的母体上,一般认为是一颗小行星,所以这种合成在原始地球上发生并且第一批生物体由这些化合物形成是有道理的,但尚未得到证实。

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