3成分前駆体混合物からのペプチド、ペプチド核酸成分、およびその他の生体由来化合物の合成
Bruno Mattia Bizzarri1, Rosangela Santalucia2, Eleonora Mancin1
1Dipartimento Di Scienze Ecologiche e Biologiche, Università Degli Studi Della Tuscia, Viterbo, Italy.
Abstract:
We have explored the reactions of a three-components mixture made of formamide, diaminomaleonitrile, and glycine, with meteorites as catalysts and high-energy proton beam irradiation as the energy source, mimicking the solar wind. The resulting mixture contained a wide array of biogenic compounds, including the complete set of RNA nucleobases and nucleosides, thymine and its analogs, pterins, triazines, carboxylic acids, diketopiperazines, hydantoins, N-carboxyamino acid anhydrides, amino acids, peptides, and nucleobase-amino acid/peptide conjugates. It also embodies the possibility of synthesis stability of RNA-peptide chimeras onto which evolution to the extant molecular genetic system could start. The prebiotic worth of the system consists of the fact that formamide derives from HCN hydrolysis; glycine is a condensation product of formamide and HCN; diaminomaleonitrile is obtained from HCN. The fact that the starting mixture is three-component does not decrease the prebiotic value; it is a subset of a largely possible general universal condition: all the starting components are only the second step of facile condensation reactions. This model could be the starting point for the chemical evolution towards biological complexity.
関連する概念動画
Peptidoglycan Synthesis
Amino Acid Biosynthetic Pathways
Biosynthesis of Nucleic Acids
Conditions on Early Earth
Peptide Bonds
Biosynthesis in Bacteria


