Kim Eun-Kyong, Martin Vincent, Krishnamurthy Ramanarayanan
Department of Chemistry, The Scripps Research Institute, 10550, North Torrey Pines Rd, La Jolla, Ca, 92037, USA.
Chemistry. 2017 Sep 12;23(51):12668-12675. doi: 10.1002/chem.201702912. Epub 2017 Aug 11.
The prebiotic synthesis of canonical nucleobases from HCN is a cornerstone for the RNA world hypothesis. However, their role in the primordial pathways to RNA is still debated. The very same process starting from HCN also gives rise to orotic acid, which (via orotidine) plays a crucial role in extant biology in the de novo synthesis of uridine and cytidine, the informational base-pairs in RNA. However, orotidine itself is absent in RNA. Given the prebiotic and biological relevance of orotic acid vis-à-vis uracil, we investigated orotidine-containing RNA oligonucleotides and show that they have severely compromised base-pairing properties. While not unexpected, these results suggest that the emergence of extant RNA cannot just be a consequence of the plausible prebiotic formation of its chemical constituents/building blocks. In combination with other investigations on alternative prebiotic nucleobases, sugars, and linkers, these findings imply that the selection of the components of extant RNA occurred at a higher hierarchical level of an oligomer/polymer based on its functional properties-pointing to a systems chemistry emergence of RNA from a library of precursors.
由HCN进行的标准核碱基的益生元合成是RNA世界假说的基石。然而,它们在通向RNA的原始途径中的作用仍存在争议。从HCN开始的相同过程也会产生乳清酸,乳清酸(通过乳清苷)在现存生物学中对尿苷和胞苷的从头合成起着关键作用,尿苷和胞苷是RNA中的信息碱基对。然而,乳清苷本身并不存在于RNA中。鉴于乳清酸相对于尿嘧啶的益生元和生物学相关性,我们研究了含乳清苷的RNA寡核苷酸,并表明它们的碱基配对特性严重受损。虽然并非出人意料,但这些结果表明,现存RNA的出现不能仅仅是其化学成分/构建块可能的益生元形成的结果。结合对替代益生元核碱基、糖和连接体的其他研究,这些发现意味着现存RNA成分的选择是基于其功能特性在更高层次的寡聚物/聚合物水平上发生的——这表明RNA是从前体库中通过系统化学方式出现的。