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11 Findings and hurdles on the path leading from formamide to the spontaneous generation of RNA
Authors:Samanta Pino  Raffaele Saladino  Giorgia Botta  Giovanna Costanzo
Institution:1. Dipartimento di Biologia e Biotecnologie “Charles Darwin”, “Sapienza” , Università di Roma , P.leAldo Moro, 5, 00185 , Rome , Italy Phone: (+39) 06-49912880 Fax: (+39) 06-49912880;2. Dipartimento di Agrobiologia ed Agrochimica , Università della Tuscia , via San Camillo De Lellis, 01100 , Viterbo , Italy;3. Istituto di Biologia e e Patologia Molecolari , CNR, P.le Aldo Moro, 5, 00185, Rome , Italy
Abstract:Our laboratories analyze the synthetic reactions leading from formamide, NH2COH to prebiotically relevant compounds in the presence of catalysts. We have described the formation of all the biological nucleic bases of carboxylic acids of two aminoacids, and of condensing agents in the presence of catalysts of terrestrial origin (Saladino et al., 2012) and of one meteorite. Heat-dependent synthetic reactions from NH2COH lead to the synthesis of acyclonucleosides, not (yet?) to that of nucleosides hurdle # 1]. Nucleosides are phosphorylated in the presence of NH2COH and a phosphate source yielding cyclic nucleotides as well. (Costanzo et al., 2007). 3′,5′-cyclic GMP nonenzymatically polymerizes up to at least 25mers, as shown by PAGE, MALDI ToF, 31P-NMR, specific RNAse and inhibitors analyses (Costanzo et al., 2012).The reaction is stimulated by 1,8-diazabicycloundec-7-ene and dimethylformamide. 3′,5′-cUMP does not polymerize spontaneously hurdle # 2], 3′,5′-cAMP polymerizes very poorly hurdle # 3]. We will discuss data on the polymerization of 3′,5′-cCMP and on a ribozyme activity exerted by oligomers neosynthesized from cyclic nucleotides. This approach finds its larger perspective in the evolutionary scenario depicted by Trifonov (2009).
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