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How did Metabolism and Genetic Replication Get Married?
Authors:Vic Norris  Corinne Loutelier-Bourhis  Alain Thierry
Institution:1. Theoretical Biology Unit, EA3829, Faculty of Science, University of Rouen, 76821, Mont Saint Aignan, France
2. Spectrom??trie de masse Bio-Organique, CNRS UMR 6014, University of Rouen, 76821, Mont Saint Aignan, France
3. Sysdiag UMR 3145-CNRS/BIO-RAD, Cap Delta 1682 Rue de la Valsiere, 34184, Montpellier Cedex 4, France
Abstract:In addressing the question of the origins of the relationship between metabolism and genetic replication, we consider the implications of a prebiotic, fission-fusion, ecology of composomes. We emphasise the importance of structures and non-specific catalysis on interfaces created by structures. From the assumption that the bells of the metabolism-replication wedding still echo in modern cells, we argue that the functional assemblies of macromolecules that constitute hyperstructures in modern bacteria are the descendants of composomes and that interactions at the hyperstructure level control the cell cycle. A better understanding of the cell cycle should help understand the original metabolism-replication marriage. This understanding requires new concepts such as metabolic signalling, metabolic sensing and Dualism, which entails the cells in a population varying the ratios of equilibrium to non-equilibrium hyperstructures so as to maximise the chances of both survival and growth. A deeper understanding of the coupling between metabolism and replication may also require a new view of cell cycle functions in creating a coherent diversity of phenotypes and in narrowing the combinatorial catalytic space. To take these ideas into account, we propose the Accordion model in which a dynamic interface between lipid domains catalysed monomer to polymer reactions and became decorated with peptides and nucleotides that favoured their own catalysis. In this model, metabolism, replication, differentiation and division all began together at the interface between extended equilibrium structures within protocells or composomes.
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