Materese Christopher K, Nuevo Michel, Sandford Scott A
1 NASA Ames Research Center , Space Science and Astrobiology Division, Moffett Field, California.
2 Bay Area Environmental Research Institute , Petaluma, California.
Astrobiology. 2017 Aug;17(8):761-770. doi: 10.1089/ast.2016.1613. Epub 2017 Jul 19.
Nucleobases are the informational subunits of RNA and DNA and are essential to all known forms of life. The nucleobases can be divided into two groups of molecules: the pyrimidine-based compounds that include uracil, cytosine, and thymine, and the purine-based compounds that include adenine and guanine. Previous work in our laboratory has demonstrated that uracil, cytosine, thymine, and other nonbiological, less common nucleobases can form abiotically from the UV photoirradiation of pyrimidine in simple astrophysical ice analogues containing combinations of HO, NH, and CH. In this work, we focused on the UV photoirradiation of purine mixed with combinations of HO and NH ices to determine whether or not the full complement of biological nucleobases can be formed abiotically under astrophysical conditions. Room-temperature analyses of the resulting photoproducts resulted in the detection of adenine, guanine, and numerous other functionalized purine derivatives. Key Words: Pyrimidine-Nucleobases-Interstellar; Ices-Cometary; Ices-Molecular processes-Prebiotic chemistry. Astrobiology 17, 761-770.
核碱基是核糖核酸(RNA)和脱氧核糖核酸(DNA)的信息亚基,对所有已知生命形式都至关重要。核碱基可分为两类分子:基于嘧啶的化合物,包括尿嘧啶、胞嘧啶和胸腺嘧啶;以及基于嘌呤的化合物,包括腺嘌呤和鸟嘌呤。我们实验室之前的研究表明,在含有HO、NH和CH组合的简单天体物理冰类似物中,尿嘧啶、胞嘧啶、胸腺嘧啶以及其他非生物的、不太常见的核碱基可由嘧啶的紫外线光照射非生物形成。在这项工作中,我们聚焦于嘌呤与HO和NH冰组合的紫外线光照射,以确定在天体物理条件下是否能非生物形成完整的生物核碱基。对所得光产物的室温分析检测到了腺嘌呤、鸟嘌呤以及许多其他功能化的嘌呤衍生物。关键词:嘧啶 - 核碱基 - 星际;冰 - 彗星;冰 - 分子过程 - 益生元化学。《天体生物学》17卷,761 - 770页 。