Šponer Judit E, Šponer Jiří, Di Mauro Ernesto
Institute of Biophysics, Academy of Sciences of the Czech Republic, Královopolská 135, 61265, Brno, Czech Republic.
CEITEC - Central European Institute of Technology, Masaryk University, Campus Bohunice, Kamenice 5, 62500, Brno, Czech Republic.
J Mol Evol. 2016 Jan;82(1):5-10. doi: 10.1007/s00239-015-9709-5. Epub 2015 Oct 31.
Emergence of the very first RNA or RNA-like oligomers from simple nucleotide precursors is one of the most intriguing questions of the origin of life research. In the current paper, we analyse the mechanism of four non-enzymatic template-free scenarios suggested for the oligomerization of chemically non-modified cyclic and acyclic nucleotides in the literature. We show that amines may have a twofold role in these syntheses: due to their high affinity to bind protons they may activate the phosphorus of the phosphate group via proton transfer reactions, or indirectly they may serve as charge compensating species and influence the self-assembling of nucleotides to supramolecular architectures compatible with the oligomerization reactions. Effect of cations and pH on the reactions is also discussed.
由简单核苷酸前体产生最初的RNA或类RNA低聚物是生命起源研究中最引人入胜的问题之一。在本文中,我们分析了文献中提出的四种用于化学未修饰的环状和非环状核苷酸寡聚化的非酶无模板反应机制。我们表明,胺类在这些合成反应中可能具有双重作用:由于它们具有高质子结合亲和力,它们可能通过质子转移反应激活磷酸基团的磷,或者间接地,它们可以作为电荷补偿物质,并影响核苷酸自组装成与寡聚化反应兼容的超分子结构。还讨论了阳离子和pH对反应的影响。