Civiš Svatopluk, Szabla Rafał, Szyja Bartłomiej M, Smykowski Daniel, Ivanek Ondřej, Knížek Antonín, Kubelík Petr, Šponer Jiří, Ferus Martin, Šponer Judit E
J. Heyrovský Institute of Physical Chemistry, Academy of Sciences of the Czech Republic, Dolejškova 3, CZ-182 23 Prague 8, Czech Republic.
Institute of Biophysics, Academy of Sciences of the Czech Republic, Královopolská 135, CZ-612 65 Brno, Czech Republic.
Sci Rep. 2016 Mar 16;6:23199. doi: 10.1038/srep23199.
Recent synthetic efforts aimed at reconstructing the beginning of life on our planet point at the plausibility of scenarios fueled by extraterrestrial energy sources. In the current work we show that beyond nucleobases the sugar components of the first informational polymers can be synthesized in this way. We demonstrate that a laser-induced high-energy chemistry combined with TiO2 catalysis readily produces a mixture of pentoses, among them ribose, arabinose and xylose. This chemistry might be highly relevant to the Late Heavy Bombardment period of Earth's history about 4-3.85 billion years ago. In addition, we present an in-depth theoretical analysis of the most challenging step of the reaction pathway, i.e., the TiO2-catalyzed dimerization of formaldehyde leading to glycolaldehyde.
近期旨在重构地球生命起源的合成研究表明,由外星能源推动的生命起源设想具有合理性。在当前这项工作中,我们表明,除了核碱基之外,首批信息聚合物的糖组分也能够以这种方式合成。我们证明,激光诱导的高能化学与二氧化钛催化相结合能够轻易产生戊糖混合物,其中包括核糖、阿拉伯糖和木糖。这种化学过程可能与地球历史上约40亿至38.5亿年前的晚期重轰炸期高度相关。此外,我们对反应路径中最具挑战性的步骤,即二氧化钛催化甲醛二聚生成乙醇醛,进行了深入的理论分析。