Login / Signup

Expanding the informational chemistries of life: peptide/RNA networks.

Olga TaranChenrui ChenTolulope O OmosunMing-Chien HsiehAllisandra RhaJay T GoodwinAnil K MehtaMartha A GroverDavid G Lynn
Published in: Philosophical transactions. Series A, Mathematical, physical, and engineering sciences (2019)
The RNA world hypothesis simplifies the complex biopolymer networks underlining the informational and metabolic needs of living systems to a single biopolymer scaffold. This simplification requires abiotic reaction cascades for the construction of RNA, and this chemistry remains the subject of active research. Here, we explore a complementary approach involving the design of dynamic peptide networks capable of amplifying encoded chemical information and setting the stage for mutualistic associations with RNA. Peptide conformational networks are known to be capable of evolution in disease states and of co-opting metal ions, aromatic heterocycles and lipids to extend their emergent behaviours. The coexistence and association of dynamic peptide and RNA networks appear to have driven the emergence of higher-order informational systems in biology that are not available to either scaffold independently, and such mutualistic interdependence poses critical questions regarding the search for life across our Solar System and beyond.This article is part of the themed issue 'Reconceptualizing the origins of life'.
Keyphrases
  • nucleic acid
  • healthcare
  • quantum dots
  • molecular dynamics simulations
  • health information
  • fatty acid
  • drug discovery
  • finite element