Ertem G, Ferris J P
Department of Chemistry, Rensselaer Polytechnic Institute, Troy, New York 12180, USA.
Nature. 1996 Jan 18;379(6562):238-40. doi: 10.1038/379238a0.
The concept of an RNA world in the chemical origin of life is appealing, as nucleic acids are capable of both information storage and acting as templates that catalyse the synthesis of complementary molecules. Template-directed synthesis has been demonstrated for homogeneous oligonucleotides that, like natural nucleic acids, have 3',5' linkages between the nucleotide monomers. But it seems likely that prebiotic routes to RNA-like molecules would have produced heterogeneous molecules with various kinds of phosphodiester linkages and both linear and cyclic nucleotide chains. Here we show that such heterogeneity need be no obstacle to the templating of complementary molecules. Specifically, we show that heterogeneous oligocytidylates, formed by the montmorillonite clay-catalysed condensation of actuated monomers, can serve as templates for the synthesis of oligoguanylates. Furthermore, we show that oligocytidylates that are exclusively 2',5'-linked can also direct synthesis of oligoguanylates. Such heterogeneous templating reactions could have increased the diversity of the pool of protonucleic acids from which life ultimately emerged.
在生命的化学起源中,RNA世界的概念很有吸引力,因为核酸既能储存信息,又能作为模板催化互补分子的合成。对于与天然核酸一样在核苷酸单体之间具有3',5'连接的均相寡核苷酸,已经证明了模板导向的合成。但似乎通往类RNA分子的益生元途径可能产生了具有各种磷酸二酯键以及线性和环状核苷酸链的异质分子。在这里,我们表明这种异质性不一定会阻碍互补分子的模板化。具体而言,我们表明由蒙脱石粘土催化的活化单体缩合形成的异质寡胞嘧啶核苷酸可以作为合成寡鸟嘌呤核苷酸的模板。此外,我们表明仅具有2',5'-连接的寡胞嘧啶核苷酸也可以指导寡鸟嘌呤核苷酸的合成。这种异质模板反应可能增加了最终产生生命的原核酸库的多样性。