AI Article Synopsis

  • Cellular life relies on polymer networks like DNA, RNA, and proteins for various essential functions, but these complex systems likely evolved from simpler precursors.
  • The RNA world hypothesis suggests RNA as the original building block of life, but challenges remain, including difficulties in synthesizing RNA monomers and uncertain pathways for their assembly and replication in early Earth conditions.
  • This review explores how heterogeneous environments and catalysis could facilitate the formation of RNA networks, potentially addressing these challenges and providing insight into the simultaneous emergence of various life-sustaining polymers.

Article Abstract

Cellular life is based on interacting polymer networks that serve as catalysts, genetic information and structural molecules. The complexity of the DNA, RNA and protein biochemistry suggests that it must have been preceded by simpler systems. The RNA world hypothesis proposes RNA as the prime candidate for such a primal system. Even though this proposition has gained currency, its investigations have highlighted several challenges with respect to bulk aqueous media: (1) the synthesis of RNA monomers is difficult; (2) efficient pathways for monomer polymerization into functional RNAs and their subsequent, sequence-specific replication remain elusive; and (3) the evolution of the RNA function towards cellular metabolism in isolation is questionable in view of the chemical mixtures expected on the early Earth. This review will address the question of the possible roles of heterogeneous media and catalysis as drivers for the emergence of RNA-based polymer networks. We will show that this approach to non-enzymatic polymerizations of RNA from monomers and RNA evolution cannot only solve some issues encountered during reactions in bulk aqueous solutions, but may also explain the co-emergence of the various polymers indispensable for life in complex mixtures and their organization into primitive networks.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5198075PMC
http://dx.doi.org/10.3390/life6040040DOI Listing

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