Department of Earth Science, Tohoku University, Aza-aoba 6-3, Aramaki, Aoba-ku, Sendai, Japan,
Orig Life Evol Biosph. 2013 Oct;43(4-5):353-61. doi: 10.1007/s11084-013-9350-5. Epub 2013 Dec 19.
In this study, borate was found to selectively increase the stability of ribose over other aldopentoses. Ribose is the only sugar present in both early RNA-based biochemistry and contemporary DNA-based life, and the stability of ribose is of fundamental concern for determining the origin of early RNA-based biochemistry. The formose reaction is a potential process in the prebiotic synthesis of ribose and its stereoisomers arabinose, xylose, and lyxose. Ribose is the least stable of these aldopentoses, raising the fundamental question of whether it was originally a component of primitive RNA or was selected through biotic processes. Borate is known to increase the stability of aldopentoses, but the specific differences in the stabilization achieved among different stereoisomers remain unclear. In this study, it was found that the stabilities of all of the tested pentoses increased with the concentration of added borate, but notably, the stability of ribose increased the most. The predominant formation of complexes between borate and ribose was verified, in agreement with previous studies. This borate complex formation might have sequestered ribose from the isomerization and decomposition reactions, resulting in its selective stabilization. These findings indicate that ribose could have accumulated in borate-rich environments on the early Earth and suggest that ribose-based nucleotides combined with phosphate and nucleobases formed abiotically.
在这项研究中,硼酸被发现能够选择性地提高核糖相对于其他戊糖的稳定性。核糖是早期基于 RNA 的生物化学和现代基于 DNA 的生命中都存在的唯一一种糖,核糖的稳定性对于确定早期基于 RNA 的生物化学的起源至关重要。醛糖呋喃糖重复序列反应是核糖及其立体异构体阿拉伯糖、木糖和来苏糖在预成性合成中的一个潜在过程。核糖是这些戊糖中最不稳定的,这就提出了一个基本问题,即它最初是否是原始 RNA 的组成部分,或者是否是通过生物过程选择的。硼酸已知可以提高戊糖的稳定性,但不同立体异构体之间实现的稳定化的具体差异仍不清楚。在这项研究中,发现所有测试的戊糖的稳定性都随着添加硼酸的浓度的增加而增加,但值得注意的是,核糖的稳定性增加最多。硼酸与核糖之间形成复合物的主要形式得到了验证,这与先前的研究一致。这种硼酸络合物的形成可能将核糖与异构化和分解反应隔离开来,从而导致其选择性稳定。这些发现表明,核糖可能在早期地球上富含硼酸的环境中积累,并表明基于核糖的核苷酸与磷酸盐和核苷碱基形成了非生物合成。